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Tytuł:
Seasonal Variations of Sea Surface Temperature and Sea Current in the Celebes Sea
Autorzy:
Hapsari, Siti Nirmala
Syamsuddin, Mega Laksmini
Riyantini, Indah
Sunarto, Sunarto
Powiązania:
https://bibliotekanauki.pl/articles/1031483.pdf
Data publikacji:
2021
Wydawca:
Przedsiębiorstwo Wydawnictw Naukowych Darwin / Scientific Publishing House DARWIN
Tematy:
Celebes Sea
Sea Current
Sea Surface Temperature
Opis:
The waters of the Celebes Sea are an area that has quite complex dynamics because it is influenced by several factors, either regionally or globally. This influence certainly has an impact on variations in oceanographic conditions in waters such as Sea Surface Temperature (SST) and sea currents. Currently, there are many observations of oceanographic data, one of which is by using remote sensing methods. The purpose of this study was to determine the seasonal variations in sea surface temperature and sea surface currents in the Celebes Sea using a remote sensing system in a time series for 5 years (2014-2018). The results of this study indicate data on seasonal variation of SST and sea surface currents have an average maximum SST value for 5 years occurring in the eastern season and the second transitional season (May, June, July) with an average value range of 30.6 °C - 31.1 °C and the average maximum sea current velocity for 5 years occurs in the western monsoon with a value range of 0.72 m/s - 0.77 m/s. The high SST value and sea current velocity are caused by the influence of the season which causes variations in the ongoing rainfall, also presumably due to the opposite direction between the monsoon wind and the direction of the main current flowing in the Celebes Sea.
Źródło:
World News of Natural Sciences; 2021, 35; 135-143
2543-5426
Pojawia się w:
World News of Natural Sciences
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Influence of Indian Ocean Dipole Phenomena Towards the Eddy Variability in Southern Java Ocean
Autorzy:
Rachim, Fadliyan R.
Syamsudin, Mega L.
Riyantini, Indah
Yuliadi, Lintang P. S.
Powiązania:
https://bibliotekanauki.pl/articles/1065419.pdf
Data publikacji:
2019
Wydawca:
Przedsiębiorstwo Wydawnictw Naukowych Darwin / Scientific Publishing House DARWIN
Tematy:
Automated Eddy Detection
Eddies
IOD
SSH
Sea Temperature
Opis:
The phenomenon of Indian Ocean Dipole (IOD) can influence the variability of eddy in the Southern Java Ocean (SJO). The purpose of this research is to know the characteristics of eddy in the SJO at the time of the IOD condition. The research was conducted in Eastern Indian Ocean (EIO), South of the Java Island by coordinate 0º S – 15º S and 90º E – 120º E. The data used in this research is currents data, sea surface height (SSH) data, and temperature data from HYCOM, and Dipole Mode Index (DMI) data from Japan Marine Science and Technology (JAMSTEC). Methods used for detecting eddy is using the Automated Eddy Detection (AED) method. The results of this research show that the IOD phenomena affect the variability of eddies in the SJO, this is evidenced by the difference of the total eddies is generated at the time of normal conditions and at the time was going to the phenomenon of IOD. Total average eddies on IODM (+) conditions is 153 and on IODM (-) conditions is 144. IODM (+) conditions could cause the value of a central point of sea surface height (SSH) and sea temperature is lower than the normal conditions, the opposite IODM (-) conditions can cause the value of a central point of SSH and sea temperature is higher than the normal conditions.
Źródło:
World Scientific News; 2019, 132; 121-131
2392-2192
Pojawia się w:
World Scientific News
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Overview of Oceanic Eddies in Indonesia Seas Based on the Sea Surface Temperature and Sea Surface Height
Autorzy:
Purba, Noir P.
Faizal, Ibnu
Damanik, Finri S.
Rachim, Fadliyan R.
Mulyani, Putri G.
Powiązania:
https://bibliotekanauki.pl/articles/1031834.pdf
Data publikacji:
2020
Wydawca:
Przedsiębiorstwo Wydawnictw Naukowych Darwin / Scientific Publishing House DARWIN
Tematy:
Eddies
Indonesia Throughflow
Ocean Fronts
Water Mass
Opis:
One of the complexities of the ocean currents in the territorial waters of Indonesia is oceanic eddies form. Ocean eddy is one of the very crucial phenomena in the ocean due to its circulation and connection with the chemical and biological aspects in the water column. This study aimed to observe the distribution of oceanic eddies associated with the Sea Surface Temperature (SST) and Sea Surface Height (SSH) with the Automatic Eddy Detection (AED) method. The analysis included distribution and types correlated with seasons. The results showed that eddies occur in all regions in the Indonesian Seas except the Java Sea. In general, the occurrence of eddies every month does not differ significantly for both Ocean Cyclonic Eddies (OCE) and Ocean Anticyclonic Eddies (OAE). The total oceanic eddies in a year are around 1,149 events. A minimum radius of the ocean eddies found was about 5.08 km, and a maximum was around 386.76 km. Furthermore, the occurrence of OCE is mostly in locations that are almost the same as OAE. Both types of eddy are mostly in locations with the boundary of temperatures and the boundary of SSH. Several eddies exist every month and mostly change or move into other areas. Eddies in Indonesia seas are influenced by differences of SST and different SSH that form ocean currents. One of the complexities of the ocean currents in the territorial waters of Indonesia is oceanic eddies form. Ocean eddy is one of the very crucial phenomena in the ocean due to its circulation and connection with the chemical and biological aspects in the water column. This study aimed to observe the distribution of oceanic eddies associated with the Sea Surface Temperature (SST) and Sea Surface Height (SSH) with the Automatic Eddy Detection (AED) method. The analysis included distribution and types correlated with seasons. The results showed that eddies occur in all regions in the Indonesian Seas except the Java Sea. In general, the occurrence of eddies every month does not differ significantly for both Ocean Cyclonic Eddies (OCE) and Ocean Anticyclonic Eddies (OAE). The total oceanic eddies in a year are around 1,149 events. A minimum radius of the ocean eddies found was about 5.08 km, and a maximum was around 386.76 km. Furthermore, the occurrence of OCE is mostly in locations that are almost the same as OAE. Both types of eddy are mostly in locations with the boundary of temperatures and the boundary of SSH. Several eddies exist every month and mostly change or move into other areas. Eddies in Indonesia seas are influenced by differences of SST and different SSH that form ocean currents.
Źródło:
World Scientific News; 2020, 147; 166-178
2392-2192
Pojawia się w:
World Scientific News
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Sea surface temperature distribution during upwelling along the Polish Baltic coast
Autorzy:
Krezel, A.
Ostrowski, M.
Szymelfenig, M.
Powiązania:
https://bibliotekanauki.pl/articles/48583.pdf
Data publikacji:
2005
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
advanced very high resolution radiometer
temperature
upwelling
coastal upwelling
coastal region
sea surface
Baltic Sea
Opis:
Among over 150 maps of sea surface temperature in the Polish Baltic coastal region derived from satellite data during the warm period of the year (April–October) in 2000–2002, 41 cases were noted where its distribution showed characteristic features indicating the occurrence of coastal upwelling. The fundamental parameters of range, probability of occurrence and temperature modification caused by water from deeper sea layers raised by an upwelling event and spreading across the surface were established for three regions (Hel, Łeba and Kołobrzeg). The Kołobrzeg upwelling region had the largest spatial range (up to 5000 km2). The region with the smallest spatial range (Hel, up to 1400 km2) had the largest surface temperature amplitude (to 14◦C), the largest maximum temperature gradient (5◦C km−1) and the largest average sea surface temperature decrease in the centre in relation to the background value.
Źródło:
Oceanologia; 2005, 47, 4
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Recent sea surface temperature trends and future scenarios for the Mediterranean Sea
Autorzy:
Shaltout, M.
Omstedt, A.
Powiązania:
https://bibliotekanauki.pl/articles/49032.pdf
Data publikacji:
2014
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
Mediterranean Sea
sea surface temperature
temporal distribution
spatial distribution
climate change
heat exchange
cloud cover
variation coefficient
Źródło:
Oceanologia; 2014, 56, 3
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Sea surface temperature retrieval from MSG-SEVIRI data in the Baltic Sea area
Autorzy:
Wozniak, M.
Krezel, A.
Powiązania:
https://bibliotekanauki.pl/articles/47694.pdf
Data publikacji:
2010
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
sea surface temperature
Baltic Sea
algorithm
mid-latitude region
spatial resolution
regression analysis
surface temperature
marine environment
climate change
Opis:
The aim of the paper was to confirm the proposition that the classical SST algorithms MCSST and NLSST originally prepared for AVHRR data could also be used for Meteosat/SEVIRI data with satisfactory accuracy in the mid-latitude region, where the spatial resolution is about 7×7 km. The research was performed in the southern Baltic Sea (between 13◦E 53◦N and 21◦E 58◦N). Data were collected in all the seasons of 2007. The coefficients were found by means of regression analysis. SSTs determined on the basis of AVHRR data were used in the regression analysis instead of in situ data. A set of paired AVHRR and SEVIRI images spaced no more than 8 minutes apart were compared. The results show that the method is capable of producing sea surface temperatures with a statistical error (standard deviation) of 1◦C.
Źródło:
Oceanologia; 2010, 52, 3; 331-344
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Sea surface temperature development of the Baltic sea in the period 1990-2004
Autorzy:
Siegel, H.
Gerth, M.
Tschersich, G.
Powiązania:
https://bibliotekanauki.pl/articles/48942.pdf
Data publikacji:
2006
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
Sopot
regional variation
sea surface temperature
seasonal variation
conference
interannual variation
Baltic Sea
trend
Opis:
Sea Surface Temperature (SST) maps derived from NOAA weather satellites for the period 1990–2004 were used to investigate seasonal and inter-annual variations in the Baltic Sea. A comparison between monthly mean SST and in situ measurements at the MARNET station ‘Arkona Sea’ showed good agreement with differences in July and August. Monthly means reflect strong seasonal and interannual variations. The yearly means show a slight positive trend with an increase of 0.8 K in 15 years. In particular, summer and autumn months contribute to this positive trend, with stronger trends in the northern than in the southern Baltic. The winters are characterised by a slightly negative trend. The winter minimum SST in the Arkona Sea correlates best with the WIBIX climate index derived for the Baltic region.
Źródło:
Oceanologia; 2006, 48, S
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Annual course of superficial water temperature in the Ezcurra Inlet, King George Island, Antarctica
Autorzy:
Gurgul, Henryk
Stochmal, Wiesław
Szymczak, Wiesław
Powiązania:
https://bibliotekanauki.pl/articles/2052577.pdf
Data publikacji:
1996
Wydawca:
Polska Akademia Nauk. Czytelnia Czasopism PAN
Tematy:
Antarctica
South Shetland Islands
sea water temperature
Źródło:
Polish Polar Research; 1996, 17, 1-2; 43-59
0138-0338
2081-8262
Pojawia się w:
Polish Polar Research
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Spatial and interannual variations of seasonal sea surface temperature patterns in the Baltic Sea
Autorzy:
Bradtke, K.
Herman, A.
Urbanski, J.A.
Powiązania:
https://bibliotekanauki.pl/articles/48507.pdf
Data publikacji:
2010
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
spatial variation
interannual variation
sea surface temperature
seasonality
global climate change
thermal season
annual cycle
transitional period
Baltic Sea
Opis:
On the basis of monthly averaged satellite data, this study examined how the annual cycle of the Baltic Sea surface temperature (SST) varied spatially and temporally during the period 1986–2005. We conclude that there are two main thermal seasons in the Baltic Sea separated only by short transitional periods – spring lasting about one month, and autumn lasting two months. Generally speaking, summer covers the part of the year from June to October with the highest monthly mean SST in August. Winter, with a minimum monthly mean SST in February in shallow waters or in March in deeper areas, lasts from December to April. As a result of climate changes over the Baltic Sea region, strong positive trends in SST occur in the summer months. In consequence, the period with extremely high sea surface water temperatures has become slightly longer in the central Baltic. In the last decade winter changes in SST display zero or even negative tendencies. The investigated period was characterized by an annual increase in mean temperatures of about 0.03–0.07◦C. However, the rates of monthly mean SST changes were sometimes more than three times as high.
Źródło:
Oceanologia; 2010, 52, 3; 345-362
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Influence of density stratification on effluent plume dynamics
Autorzy:
Loncar, G.
Paklar, G.B.
Janekovic, I.
Powiązania:
https://bibliotekanauki.pl/articles/47653.pdf
Data publikacji:
2011
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
3D numerical model
Croatia
density stratification
numerical model
numerical simulation
Rijeka Bay
salinity
sea temperature
statistical analysis
submarine outfall
submarine sewage
Opis:
In this study we modelled sea temperature (T ), salinity (S) and density field dynamics using a 3D numerical model applied to Rijeka Bay (Croatia) in order to explore their effect on effluent plume dynamics in the vicinity of four submarine sewage outfalls when the bora wind (NE direction) is blowing. The vertical density stratification in the area studied is strongly related to the bora wind, which contributes significantly to the lowering of the pycnocline depth through enhanced mixing in the vertical, giving rise to changes in the neutral buoyancy level. The features of near-field plume dynamics were calculated with the use of a separate near-field numerical model, using information on the vertical density distribution previously calculated using a 3D numerical model. The results of the numerical simulations and statistical analysis of the wind data indicate a very low probability of complete water column homogenization and consequent effluent plume rise to the sea surface under the influence of the bora wind during the peak tourist season (May–September).
Źródło:
Oceanologia; 2011, 53, 2
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Indian Ocean wind speed variability and global teleconnection patterns
Autorzy:
Sinha, M.
Jha, S.
Chakraborty, P.
Powiązania:
https://bibliotekanauki.pl/articles/2079299.pdf
Data publikacji:
2020
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
wind speed
variability
sea surface temperature
remote sensing
Indian Ocean
Opis:
The influence of the local sea surface temperature (SST) and remote ENSO (El Niño-Southern Oscillation) indices on the wind speed (WS) data were explored for the Indian Ocean region. Relationships among the parameters were studied using spatial correlation plots and significant correlation ranges. Two months (July and January) representing opposite monsoon phases were selected for analysis for the period 1950–2016. There was a significant negative correlation between WS and SST over the Bay of Bengal (BOB) during July. Although different ENSO indices correlated differently in different areas of the Indian Ocean, the region off the coast of Sri Lanka was most significantly teleconnected. The southwest monsoon locally impacted the WS and SST relationship and the WS parameter was remotely teleconnected in both the monsoon seasons. Further empirical orthogonal function (EOF) analysis was applied on the 67 years WS data of the BOB region to extract the dominant mode representing maximum variability of the total variance. The temporal pattern of the first principal component (PC1) of WS data was linked to the North Atlantic Oscillations in January and the Atlantic Multidecadal Oscillation in July respectively. The continuous wavelet power spectra of the PC1 of WS showed significant regions in the 2–4-year band resembling the ENSO variability. Wavelet coherence applied between PC1 of WS and the ENSO indices showed greatest values for January in the 8–16-year band and for July in the 0–4-year band. A close relationship was established between the WS variability in BOB and the ENSO indices.
Źródło:
Oceanologia; 2020, 62, 2; 126-138
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Zmiany temperatury powierzchni Morza Czukockiego (1982-2008)
Changes of sea surface temperature at the Chukchi Sea (1982-2008)
Autorzy:
Zblewski, S.
Marsz, A. A.
Powiązania:
https://bibliotekanauki.pl/articles/261049.pdf
Data publikacji:
2009
Wydawca:
Stowarzyszenie Klimatologów Polskich
Tematy:
Morze Czukockie
temperatura powierzchni morza
cyrkulacja atmosferyczna
sea surface temperature
atmospheric circulation
Opis:
Praca charakteryzuje zmiany temperatury powierzchni Morza Czukockiego zachodzące w okresie 1982-2008 oraz wpływ na te zmiany cyrkulacji atmosferycznej. Stwierdzono występowanie dodatnich, istotnych statystycznie, miesięcznych i rocznych trendów temperatury powierzchni morza (TPM), nierównomiernie rozłożonych w przestrzeni. Obserwuje się występowanie asynchronicznych związków między cyrkulacją atmo-sferyczną a TPM, przy czym zmiany cyrkulacji atmosferycznej wyprzedzają w czasie zmiany TPM. W badanym okresie najsilniejszy wpływ na miesięczne i roczne zmiany TPM ma charakter cyrkulacji atmosferycznej występu-jącej w dłuższych okresach – wiosną, a nawet w całym okresie marzec-sierpień i marzec-wrzesień, poprzedzającym moment wystąpienia maksimum temperatury powierzchni morza. Wpływ cyrkulacji atmosferycznej na zmiany TPM nie jest bezpośredni, lecz realizuje się poprzez wpływ na dryf lodów na Morzu Czukockim w okresie wiosen-nym i letnim.
This work characterizes changes in sea surface temperature of the Chukchi Sea observed in the period 1982- 2008 and the way atmospheric circulation (mid-troposphere circulation, modified Arctic Dipole) influences these changes. The research made use of homogeneous data series of sea surface temperature (SST) originating from the data set NOAA NCDC ERSST v.2, in a 2�‹. x 2�‹�É grid (Fig. 1). In the examined period (1982-2008) the increase in sea surface temperature of the Chukchi Sea was observed (Table 1). In the central and southern part of the sea the increase in SST is much stronger (+0.067 deg/year) than in the northern part (0.002 deg/year). This phenomenon is connected with the fact that the northern part of the examined sea area was freed from ice only after the year 2002. During the observed period there was also mean annual increase in SST ranging from 0.62�‹C in the south-west part to 0.03�‹C in the northern part of the examined region (Fig. 2). In the period 1982-2008 strong, statistically significant correlations between SST and the character of the atmospheric circulation observed before were noted. The correlations of SST in the Chukchi Sea are stronger than those with the modified Artic Dipole. The changeability of value of the modified Arctic Dipole from March to September explains 36% (in the eastern part of the sea area) and up to 46% (in the western part) of annual changeability in SST. However the influence of changes in atmospheric circulation on the changeability of SST is not direct. The character of atmospheric circulation noted in spring season (III-V) and even during the entire spring and summer seasons (III-VIII) has influence on the ice drifting in the Chukchi Sea. The drifting ice has influence on the time during which the sea surface accumulates the heat and as a consequence affects the sea surface temperature. This sequence of consecutive correlations seems to be most important for the changes in the SST. The secondary role affecting the changes in SST in the Chukchi Sea plays the increased transport of warm water from the Bering Sea forced by strong positive phases of modified Arctic Dipole in September. This influence is limited to the area up to the southern part of the Chukchi Sea and to the time till the last three months (October-December).
Źródło:
Problemy Klimatologii Polarnej; 2009, 19; 147-158
1234-0715
Pojawia się w:
Problemy Klimatologii Polarnej
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Wpływ zmian temperatury wody powierzchniowej mórz Barentsa, Norweskiego i Grenlandzkiego na trend rocznej temperatury powietrza na Spitsbergenie
Influence of changes in sea surface temperature in the Barents, Norwegian and Greenland seas on the annual air temperature trend at Spitsbergen
Autorzy:
Styszyńska, A.
Powiązania:
https://bibliotekanauki.pl/articles/261025.pdf
Data publikacji:
2011
Wydawca:
Stowarzyszenie Klimatologów Polskich
Tematy:
temperatura powietrza
temperatura powierzchni morza
Spitsbergen
air temperature
sea surface temperature
Opis:
Praca omawia wpływ zmian temperatury wód powierzchniowych (SST - sea surface temperature) mórz Barentsa, Norweskiego i Grenlandzkiego zachodzących w okresie zimowego wychładzania (styczeń-kwiecień) na roczne i sezonowe wartości temperatury powietrza na Spitsbergenie w okresie 1912-2010. Stwierdzono, że zimowa SST rozległej powierzchni mórz otaczających Spitsbergen jest silnie skorelowana z roczną temperaturą powietrza na Spitsbergenie przez kolejne trzy lata (k, k+1, k+2). Powierzchnia akwenów, na których występują opóźnione korelacje z temperaturą powietrza na Spitsbergenie stopniowo zmniejsza się, a siła związków słabnie. Obszary, na których w roku k+2 korelacje utrzymują najwyższą (p < 0.001) istotność odtwarzają szlaki przenosu prądowego. Akwen, na którym zmienność SST z roku k najsilniej koreluje z roczną i zimową temperaturą powietrza na Spitsbergenie w kolejnych trzech latach (k, k+1, k+2) nie zmienia swojego położenia - jest to obszar leżący na pograniczu N części Morza Norweskiego i W części Morza Barentsa - między Bjornoyą a Nordkapem. Długookresowe zmiany temperatury powierzchni mórz wokółspitsbergeńskich regulują długookresową zmienność temperatury powietrza na Spitsbergenie, a występujący w przebiegu rocznej temperatury powietrza trend ma swoją genezę w zmianach zasobów ciepła w wodach tych mórz.
This work discusses the influence of changes in SST (sea surface temperature) of the Barents, Norwegian and Greenland seas occurring during winter cooling (January-April) on annual and seasonal air temperatures at Spitsbergen during 1912-2010. It was found that the winter SST of vast seas surrounding the region of Spitsbergen is strongly correlated with annual and winter air temperature at Spitsbergen during the next three years (k, k+1, k+2). The sea areas, where the delayed correlations with air temperature at Spitsbergen are observed, gradually decrease, and the strength of the correlation decreases. The routes of moving current represent the areas where correlations maintain the highest significance (p <0.001) in the year k+2. The sea area, where variability of SST from year k is most strongly correlated with the annual and winter air temperature at Spitsbergen in the next three years (k, k+1, k+2) does not change its position - this is the area lying on the border of the north part of the Norwegian Sea and the west part of the Barents Sea - between Bjornoya and Nordkap. Long-term sea surface temperature changes of vast seas surrounding the region of Spitsbergen regulate the long-term variability of the air temperature on Spitsbergen, and appearing in the course of the annual air temperature trend has his own genesis in changes of resources of the warmth in waters of these seas.
Źródło:
Problemy Klimatologii Polarnej; 2011, 21; 115-131
1234-0715
Pojawia się w:
Problemy Klimatologii Polarnej
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Influence of the parametrization of water optical properties on the modelled sea surface temperature in the Baltic Sea
Autorzy:
Stramska, M.
Zuzewicz, A.
Powiązania:
https://bibliotekanauki.pl/articles/49070.pdf
Data publikacji:
2013
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
Baltic Sea
sea surface temperature
parametrization
optical property
water column
biogeochemical modelling
light propagation
vertical distribution
spectral range
photosynthetically available radiation
Źródło:
Oceanologia; 2013, 55, 1
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Validation and statistical analysis of the group for high resolution sea surface temperature data in the Arabian Gulf
Autorzy:
Nesterov, O.
Temimi, M.
Fonseca, R.
Nelli, N.R.
Addad, Y.
Bosc, E.
Abida, R.
Powiązania:
https://bibliotekanauki.pl/articles/2078874.pdf
Data publikacji:
2021
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
validation
statistical analysis
sea surface temperature
annual variability
seasonal variability
Arabian Gulf
Oman Sea
Opis:
The combined effect of climate change and steadily increasing seawater demand for industrial and domestic purposes in the Arabian Gulf region has a significant impact on the ecosystem in this region. Additionally, this effect may reduce the efficiency and increase the operating costs of industrial facilities that utilize seawater for cooling and other purposes. In this context, it is important to know various statistical characteristics of the sea surface temperature (SST) and their trends, in addition to the mean climatological characteristics. The analysis conducted in this study utilized a 17-year Group for High Resolution Sea Surface Temperature Level 4 dataset of 0.01 × 0.01° spatial resolution. First, the dataset was compared against a 2-year seawater temperature measurements at the ten offshore buoys in the relatively shallow coastal waters of the United Arab Emirates between Ras Ghumais and Dubai, which showed a reasonably good agreement between the two datasets, with the estimated root mean square deviations ranging from 0.5 to 0.9°C. Subsequently, several statistical SST characteristics were calculated. The trend analysis showed not only positive tendencies in the mean SSTs of up to 0.08°C/year in the northern Gulf, but also the trends in the annual percentile exceedances, particularly the 95th percentiles (near-maximum SSTs), which increased by approximately 0.07°C/year in the western United Arab Emirates and eastern Qatar waters. On the contrary, the 5th percentiles (near-minimum SSTs) decreased by up to 0.1°C/year, especially in the waters around Bahrain, Qatar, and the western United Arab Emirates. These results indicate that extreme hot and cold SST events in the Gulf are becoming more frequent and more extreme than before.
Źródło:
Oceanologia; 2021, 63, 4; 497-515
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Zlodzenie Hornsundu i jego przedpola (SW Spitsbergen) w sezonie zimowym 2006/2007
Sea-ice cover in Hornsund and its foreshore (SW Spitsbergen) during winter season 2006/2007
Autorzy:
Styszyńska, A.
Rozwadowska, A.
Powiązania:
https://bibliotekanauki.pl/articles/260707.pdf
Data publikacji:
2008
Wydawca:
Stowarzyszenie Klimatologów Polskich
Tematy:
Hornsund
Spitsbergen
lód morski
sezon lodowy
sea ice
winter season
sea water temperature
Opis:
W sezonie zimowym 2006/2007 przebieg zlodzenia Hornsundu był odmienny od przeciętnego. Od listopada do marca średnia miesięczna temperatura powietrza była o 3.6–6.3 deg wyższa od średniej klima-tycznej (1978–2006). Ujemna temperatura wody powierzchniowej przy brzegu Isbjornhamny występowała od 28 IX 2006 do 27 V 2007 r. Najniższe wartości temperatury wody mierzono w drugiej i trzeciej dekadzie października (–1.8°C). Latem i jesienią 2006 r. dochodziło do bardzo intensywnego obłamywania się lodu lodowcowego, który okresowo tworzył zwarte skupienia wzdłuż brzegu. Rozwój lodu morskiego w Isbjornhamnie cechuje się stadial-nością. Pierwszy okres tworzenia się lodu morskiego miał miejsce między 6 października a 3 listopada, drugi – od połowy stycznia. W tym samym czasie dryfujący lód allochtoniczny pojawił się również na przedpolu fiordu. Od trzeciej dekady lutego do drugiej dekady kwietnia prawie cała powierzchnia Hornsundu pokryta była lodem dryfu-jącym o zmiennej zwartości. Na osiowej partii fiordu lód morski zanikł po 25 kwietnia, a w Brepollen – w trzeciej dekadzie czerwca 2007 r. Maksymalna wysokość wału lodu nabrzegowego w Isbjornhamnie osiągnęła 2.5 m.
This article presents the development of sea ice cover in the waters of central and western part of the Hornsund Fjord, as well as in its foreshore during winter season 2006–2007. Due to long lasting (November-March) high air temperatures (Fig. 1) the sea ice cover development of Hornsund was different from the average one. Significant decrease in air temperature was observed only in April (mean monthly –8.7°C). In such thermal conditions the maximum thickness of sea ice which might have been formed in the outer, sheltered from high seas areas of the fjord, estimated with the help of Zubov formula, could reach 47cm in January, 58cm in February, 66cm in March, up to 77–80cm in the period from April to May 2007 (Tab.1). In summer and autumn 2006 only brash glacier ice and small icebergs broken off the glaciers endings on the sea in Hornsund drifted in the waters of the fjord. At this time brash glacier ice and growlers broken off the Hans Glacier periodically concentrated densely along the coast of Isbjorhamna. The first forms of new ice (slush and grease ice as well as shuga) were observed close to the west coast of Isbjornhamna from 6th October till 3rd November. The second period of sea ice formation started on 7th December. However, the ice disappeared quickly because of strong winds. Not sooner than in the middle of January when severe frost was noted, a permanent ice cover was formed (young ice). But also this ice was broken and diverged in most part of the fjord. Fast ice was only observed in the internal waters of Hornsund, in the Brepollen, Burgerbukta and Samarinvagen bays. From the third decade of February till the end of April the ice cover of Hornsund experienced large fluctuations. During that period the entire area of Hornsund was covered with sea ice a few times. This phenomenon was noted when the allochtonic ice drifting in the waters of the Sorkapp Current entered western and central part of the fjord and when the central and inner parts were covered with ice formed in situ. This sea ice cover was several times destroyed by very strong east winds causing that most of ice was moved outside the fjord. At the beginning of May very strong E and SE winds caused ice removal from the axial part of Hornsund. Later, apart from two short episodes (19-29 May and 22-23 June) when open strips of allochtonic ice entered west and central part of the fjord, only single floes of broken-off the fast ice from Brepollen, Burgerbukta and Samarinvagen drifted in the waters of Hornsund. The ice season 2006/2007 ended on 19th July when the last floes of very rotten ice were observed drifting from the inside of the fjord with the tidal stream to its foreshore.
Źródło:
Problemy Klimatologii Polarnej; 2008, 18; 141-160
1234-0715
Pojawia się w:
Problemy Klimatologii Polarnej
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Wpływ zmian temperatury powierzchni oceanu na Morzu Norweskim na temperaturę powietrza na Svalbardzie i Jan Mayen (1982-2002)
The influence of the changes in sea surface temperature of the Norwegian Sea on the air temperature at Svalbard and Jan Mayen (1982-2002)
Autorzy:
Kruszewski, G.
Marsz, A. A.
Zblewski, S.
Powiązania:
https://bibliotekanauki.pl/articles/260931.pdf
Data publikacji:
2003
Wydawca:
Stowarzyszenie Klimatologów Polskich
Tematy:
temperatury powietrza
temperatury powierzchni oceanu
Morze Norweskie
air temperature
sea surface temperature
Norwegian Sea
Opis:
This work deals with correlations between SST in the Norwegian Sea and air temperature at selected stations located in the Atlantic sector of Arctic (Bjornoya, Hornsund, Svalbard-Lufthavn, Ny Alesund and Jan Mayen). The southern and central parts of the Norwegian Sea show the strongest correlation with the air temperature at the above mentioned stations, whereas the northern parts of this sea show weaker correlation. Apart from synchronic correlations (occurring in the same months) asynchronic correlations have been found. The latter are generally much stronger than the synchronic ones. The predominant influence on the changes in air temperature at the stations have the winter SST (JFMA) in the central part of the Norwegian Sea (grid 2° x 2°, 67°N, 010°E). These winter SST show quite strong correlations with monthly air temperature at Bjornoya, Hornsund, Svalbard-Lufthavn and Jan Mayen in July, August and September. At Ny Alesund station the period with statistically significant correlation between the air temperature and the winter SST is limited to September. The strongest correlation can be observed in August (see Table 4). The observed correlations result from modification in atmospheric circulation, caused by increased heat volume in the Norwegian Sea. Such modification is reflected in the increased frequency of occurrence of meridional atmospheric circulation, which is accompanied by the increase in the frequency of air advection from the S to this sector of Arctica. Some correlations which show more significant time shift have also been observed (see Table 5). Winter SST indicate positive correlations with air temperature observed at Bjornoya and Horn-sund in August and September the following year and at Svalbard-Lufthavn in September. At Ny Alesund station the coefficients of correlation with the air temperature in the following year are increased but they do not reach the statistically significant level. Another period with statistically significant correlations is November and December the following year; significant correlations with winter SST occur at Bjornoya (r = 0.71) and all stations located on Spitsbergen (r = 0.57). The correlations of SST with air temperature observed at Jan Mayen the following year are different, i.e. the presence of strong correlations is limited to summer season - July, August and September (r ~ 0.6). The correlations with winter SST occurring in November and December the following year is connected with warm masses carried to this region together with waters with the West Spitsbergen Current. Correlations between SST and air temperature present in summer and at the end of summer the following year may probably be influenced by the modification of atmospheric circulation. The only significant correlation with summer (July and August) SST indicates the temperature of February the following year at stations located on Spitsbergen and Jan Mayen. These correlations are negative (r ~ -0.55 - -0.50). The reason for occurrence of such correlations is not clear. The changeability of winter SST in the central part of the Norwegian Sea explains from 20% (Hornsund) to 32% (Bjornoya) of changeability in annual air temperature at the above mentioned stations in the same year and from 34% (Jan Mayen) to 41% (Hornsund) of changeability in annual air temperature in the following year. The increased level of explanation of changeability in air temperature the following year influenced by winter SST is connected with the delayed flowing of the Atlantic waters to high latitudes carried with the Norwegian Current and the West Spitsbergen Current.
Źródło:
Problemy Klimatologii Polarnej; 2003, 13; 59-78
1234-0715
Pojawia się w:
Problemy Klimatologii Polarnej
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Stan termiczny wód powierzchniowych Bałtyku a temperatura powietrza w Polsce
Sea surface temperature in Baltic and air temperature in Poland
Autorzy:
Styszynska, A.
Powiązania:
https://bibliotekanauki.pl/articles/2084511.pdf
Data publikacji:
2011
Wydawca:
Uniwersytet Warszawski. Wydział Geografii i Studiów Regionalnych
Tematy:
Baltyk
morza
wody powierzchniowe
stan termiczny
temperatura powietrza
Polska
korelacja
Opis:
The influence of sea surface temperature (SST) changeability of the Baltic Sea on the monthly and seasonal air temperature in Poland has been examined here. Spatial variability of these correlations was analyzed in the period 1950-2009, and temporal changes - in the years 1854-2009. A significant influence of changes in SST of the Baltic on air temperature in Poland at the end of winter (February-March) and in the middle of summer (Juty-August) was indicated. The correlations between SST and the air temperature are stable both in space and time. In fact the same correlation coefficients are noted at particular stations both for 155-year and for 60-year periods.
Źródło:
Prace i Studia Geograficzne; 2011, 47; 159-167
0208-4589
Pojawia się w:
Prace i Studia Geograficzne
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Spatial and temporal variability of sea surface temperature in the Baltic Sea based on 32-years (1982–2013) of satellite data
Autorzy:
Stramska, M.
Bialogrodzka, J.
Powiązania:
https://bibliotekanauki.pl/articles/48273.pdf
Data publikacji:
2015
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
satellite data
sea surface temperature
Baltic Sea
annual cycle
climate change
spatial variability
temporal variability
Źródło:
Oceanologia; 2015, 57, 3
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Comparison of direct and inverse methods of satellite observations downscaling for the coastal zone area
Autorzy:
Chybicki, A.
Łubniewski, Z.
Powiązania:
https://bibliotekanauki.pl/articles/331736.pdf
Data publikacji:
2016
Wydawca:
Polskie Towarzystwo Akustyczne
Tematy:
Earth observation
land surface temperature
sea surface temperature
PBIM downscaling method
surface effective emissivity
Opis:
The Earth observation satellite imaging systems have known limitations, especially regarding their spatial and temporal resolution. Therefore, approaches which aim to combine data retrieved from sensors of higher temporal and lower spatial resolution with the data characterized by lower temporal but higher spatial resolution are of high interest. This allows for joint utilization of the advantages of both these types of sensors. As there are several ways to achieve this goal, in this paper two approaches, direct and inverse, of downscaling the land surface temperature (LST) derived from low resolution imagery acquired by the Advanced Very High Resolution Radiometer (AVHRR) were evaluated. The applied downscaling methods utilize biophysical properties of the surface sensed using short wave infrared and thermal band. The presented algorithm evaluation was performed on the basis of a specific test case: the coastal zone area of the Gulf of Gdańsk, Poland. In this context, the objective presented in the study was to compare two methods of downscaling for a specific test case in order to evaluate how the proposed approaches cope with the specific conditions of the coastal zone area.
Źródło:
Hydroacoustics; 2016, 19; 55-64
1642-1817
Pojawia się w:
Hydroacoustics
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Summer distribution patterns of Trichodesmium spp. in the Changjiang (Yangtze River) Estuary and adjacent East China Sea shelf
Autorzy:
Jiang, Z.
Chen, J.
Zhou, F.
Zhai, H.
Zhang, D.
Yan, X.
Powiązania:
https://bibliotekanauki.pl/articles/47907.pdf
Data publikacji:
2017
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
Trichodesmium
Yangtze River
estuary
China Sea
trichome
biogeochemistry
environment parameter
sea surface temperature
salinity
Opis:
To examine the distribution of Trichodesmium relative to physicochemical factors during summer in the Changjiang (Yangtze River) Estuary and adjacent East China Sea shelf, three cruises were conducted separately in June 2009, July 2011, and August 2009. Trichodesmium species found were T. thiebautii, T. erythraeum, and T. hildebrandtii. The population was dominated by T. thiebautii, which accounted for >85% of the samples found. Most of them were free trichomes. Colonial forms were rarely observed (approximately 10% of our samples), occurring only in offshore waters. The depth integrated abundances of Trichodesmium were 308 × 103, 1709 × 103, and 3448 × 103 trichomes m−2 in June, July, and August, respectively. Trichodesmium was distributed abundantly in the southern or southeastern part of our study area, where nutrients were low and light penetration, temperature, and salinity were high, which were influenced by the Taiwan Warm Current (TWC) and Kuroshio. Trichodesmium was found in low abundance in inshore, eutrophic, low-salinity waters, which were mainly controlled by the Changjiang Diluted Water (CDW) and coastal current. These results suggest that spatiotemporal changes in the summer Trichodesmium distribution correlate highly with the variations in physicochemical properties that are primarily controlled by the TWC, Kuroshio, and CDW. The summer N2 fixation rate of Trichodesmium was estimated at 12.3 μmol N m−2 d−1 in our study area, contributing >50% of biological N2 fixation.
Źródło:
Oceanologia; 2017, 59, 3
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Variability in fish catch rates associated with Sea Surface Temperature Anomaly (Niño 3.4 index) in the West of Java Sea
Autorzy:
Syamsuddin, Mega
Sunarto, Sunarto
Yuliadi, Lintang
Harahap, Syawaludin
Powiązania:
https://bibliotekanauki.pl/articles/1076099.pdf
Data publikacji:
2019
Wydawca:
Przedsiębiorstwo Wydawnictw Naukowych Darwin / Scientific Publishing House DARWIN
Tematy:
Catch rates
El Niño
Java Sea
La Niña
oceanographic conditions
Opis:
The remotely derived oceanographic variables included sea surface height anomaly (SSHA), sea surface temperature (SST), chlorophyll-a (Chl a) and fish catches are used as a combined dataset to understand the ocean climate variability and further addresses their relations with the fish catches in the West-Java Sea. Fish catches and remotely sensed data are analyzed for the 5 years datasets from 2010-2014 and emphasized the differences of climate conditions during El Niño Southern Oscillation (ENSO) events. Here, we demonstrate the prominent annual variation of two species small pelagic fish catches (Euthynus affinis and Scomberomorus commerson) and one demersal species (Netuma thallasina) as representative of dominant catch in the region. Small pelagic catches had significant increment during El Niño compared to during La Niña events. Changes in oceanographic conditions during ENSO events resulted in perceivable variations in catches, with an average catches of 839.6 t (E. affinis) and 273,7 t (S. commerson) during El Niño. During La Niña event catch rates were reduced with an average catches of 602.6 t (E. affinis) and 210.3 t (S. commerson). During the La Niña event was less favorable for small pelagic catches. In contrast, N. thallasina does not seem to be directly affected by the ENSO. The average catches of N. thallasina during El Niño (182.17 t) lower than during La Niña (250.14 t). This inferred that different climate events might cause different oceanographic conditions that related to fish biodiversity. Our results would benefit the fish biodiversity-management to reduce risks due to climate regimes.
Źródło:
World Scientific News; 2019, 117; 175-182
2392-2192
Pojawia się w:
World Scientific News
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Zlodzenie Hornsundu i wód przyległych (Spitsbergen) w sezonie zimowym 2010-2011
Ice conditions in Hornsund and adjacent waters (Spitsbergen) during winter season 2010-2011
Autorzy:
Kruszewski, G.
Powiązania:
https://bibliotekanauki.pl/articles/260971.pdf
Data publikacji:
2012
Wydawca:
Stowarzyszenie Klimatologów Polskich
Tematy:
lód morski
temperatura wody morskiej
Hornsund
Spitsbergen
sea ice
ice season
sea surface temperature
Opis:
Sezon lodowy 2010/2011 zaczął się w połowie października. Pierwsze postacie autochtonicz-nego lodu morskiego zaobserwowano w strefie brzegowej Isbjornhamny 15.10. po spadku dobowej temperatury powietrza poniżej poziomu temperatury zamarzania wody morskiej. Zbliżone do średnich wieloletnich wartości temperatury powietrza okresu listopad – styczeń sprzyjały tworzeniu się lodu w strefie brzegowej Hornsundu. Lód morski o zwartości do 4/10 pojawił się w Hornsundzie w końcu października i utrzymywał w listopadzie. Prze-bieg warunków lodowych w rejonie południowego Spitsbergenu – zbliżony do normalnego z wielolecia – umoż-liwiał napływ lodu do fiordu z zewnątrz od połowy grudnia. W tym też okresie w wewnętrznych partiach fiordu zaczął się formować lód stały brzegowy, którego pokrywa w sposób ciągły występowała w N części Brepollen do końca drugiej dekady lipca 2011 (około 7 miesięcy). W okresie maksymalnego rozwoju (druga dekada lutego) lód stały lub całkowicie zwarty pokrywał około 2/3 powierzchni fiordu.
This paper presents the ice conditions in the Hornsund Fjord (Svalbard) during expedition season 2010/2011. Sea ice season started in the mid of October, after clear air temperature drop (Fig. 2). Since this time forms of locally formed ice were present, mainly in coastal zone. To the end of November concentration of ice did not exceed 4/10 (very open drift ice). Close to mean thermal conditions in Hornsund area during winter months (Fig.1, Tab. 1) were favourable for ice development in this region. Theoretical sea ice thickness at the end of the Year 2010 could reach about 50 cm, and close to 1 m at the end of ice season. Close and very close pack ice (7-10/10) drifting outside the fjord were present since December (Fig. 7). Easternmost inner part of the Hornsund was covered by fast (consolidated) ice since mid of December to the mid of July 2011. During its maximum development in February fast ice covered over 70% of Hornsund area. Close and very close pack ice were present at Hornsund waters in January, February, three weeks of March, second half of April and first week of May – all together over three and half months. Periods of time with smaller ice concentration were connected with strong easterly air circulation. In May and June ice concentration in SW Svalbard area decrease significantly. Last two episodes the very close ice pack flowed into the Hornsund took place in first days and in second half of July 2011 (Fig. 8).
Źródło:
Problemy Klimatologii Polarnej; 2012, 22; 69-82
1234-0715
Pojawia się w:
Problemy Klimatologii Polarnej
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Zlodzenie Hornsundu i jego przedpola (SW Spitsbergen) w sezonie zimowym 2007/2008
Ice conditions in Hornsund and its foreshore (SW Spitsbergen) during winter season 2007/2008
Autorzy:
Styszyńska, A.
Powiązania:
https://bibliotekanauki.pl/articles/260675.pdf
Data publikacji:
2009
Wydawca:
Stowarzyszenie Klimatologów Polskich
Tematy:
lód morski
sezon lodowy
temperatura wody morskiej
Hornsund
Spitsbergen
sea ice
sea surface temperature
Opis:
W sezonie zimowym 2007/2008 przebieg zlodzenia Hornsundu był odmienny od przeciętnego. Od października do lutego średnia miesięczna temperatura powietrza była o 2,6–6,1 deg wyższa, a w marcu o 2,5 deg niższa od średniej klimatycznej (1978-2006). Ujemna temperatura wody powierzchniowej przy brzegu Isbjorn-hamny występowała od 29 X 2007 do 20 V 2008 r. Najniższe (–1,9°C) wartości temperatury wody mierzono od trzeciej dekady listopada 2007 r. do końca kwietnia 2008 r. Latem i jesienią (VIII-X) 2007 r. dochodziło do inten-sywnego obłamywania się lodu lodowcowego, który okresowo tworzył zwarte skupienia growlerów i gruzu lodow-cowego wzdłuż brzegu. W Isbjornhamnie pierwszy okres tworzenia się lodu morskiego miał miejsce między 31 października a 12 grudnia 2007 r. (lepa lodowa, krążki lodowe), drugi – od 26 grudnia 2007 r. do 22 maja 2008 r. Na przedpolu Hornsundu dryfujący lód allochtoniczny pojawił się w pierwszych dniach grudnia 2007 r. Od połowy lutego do trzeciej dekady kwietnia prawie cała powierzchnia Hornsundu pokryta była lodem dryfującym o zmiennej zwartości. Na osiowej partii fiordu lód autochtoniczny zanikł po 28 kwietnia 2008 r. Maksymalna wysokość wału lodu nabrzegowego w Isbjornhamnie osiągnęła 2,5 m.
This article presents the development of sea ice cover in the waters of central and western part of the Hornsund Fjord, as well as in its foreshore during winter season 2007-2008. Due to long lasting (November-February) high air temperatures (Fig. 2-3) the sea ice cover development of Hornsund was different from the average one. Significant decrease in air temperature was observed in March (mean monthly –13.4°C) and April (mean monthly –9.3°C). In such thermal conditions the maximum thickness of sea ice which might have been formed in the outer, sheltered from high seas areas of the fjord, estimated with the help of Zubov formula, could reach 41cm in January, 52cm in February, 71cm in March, up to 82–84cm in the period from April to May 2008 (Tab. 1). In summer and autumn (August-October) 2007 only brash glacier ice and small icebergs broken off the glaciers endings on the sea in Hornsund drifted in the waters of the fjord. At this time brash glacier ice and growlers broken off the Hans Glacier periodically concentrated densely along the coast of Isbjorhamna. The first forms of new ice (slush and grease ice as well as shuga) were observed close to the west coast of Isbjornhamna from 31th October till 12rd December (Fig. 8). The second period of sea ice formation started on 26th December. Not sooner than in the middle of March when severe frost was noted, a permanent ice cover was formed (young ice). Fast ice was only observed in the internal waters of Hornsund, in the Brepollen, Burgerbukta, Samarinvagen, Adria and Isbjornhamna bays. From the first decade of February till the 3th July the ice cover of Hornsund experienced large fluctuations (Fig. 11-12, 14-17). During that period the entire area of Hornsund was covered with sea ice a few times. The first this phenomenon was noted from 7th till 20th February 2008 when the allochtonic ice drifting in the waters of the Sorkapp Current entered western and central part of the fjord and when the central and inner parts were covered with ice formed in situ (Fig. 11-12). The second this phenomenon was noted from the third decade of March till the end of April when the all surface of Hornsund were covered autochthonous ice. On the western and central part of the fjord this was young ice and nilas. In the internal waters of Hornsund was observed first-year ice (Fig. 14-15). This sea ice cover was several times destroyed by very strong east winds causing that most of ice was moved outside the fjord. At the end of April strong E and SE winds caused ice removal from the axial part of Hornsund. Later, apart from three short episodes (5-8 May, 15-22 May and 1-9 July) when strips of allochtonic ice entered west and central part of the fjord (Fig. 16-17), only single floes of broken-off the fast ice from Brepollen, Burgerbukta and Samarinvagen drifted in the waters of Hornsund. The ice season 2007-2008 ended on 9th July when the last floes of very rotten ice were observed drifting from the inside of the fjord with the tidal stream to its foreshore.
Źródło:
Problemy Klimatologii Polarnej; 2009, 19; 247-267
1234-0715
Pojawia się w:
Problemy Klimatologii Polarnej
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Zmienność temperatury powierzchni morza w rejonie Spitsbergenu (1982-2002) jako przejaw współcześnie zachodzących zmian klimatycznych
Changeability in sea surface temperature in the region of Spitsbergen (1982-2002) reflecting climatic changes observed at present
Autorzy:
Kruszewski, G.
Powiązania:
https://bibliotekanauki.pl/articles/260692.pdf
Data publikacji:
2004
Wydawca:
Stowarzyszenie Klimatologów Polskich
Tematy:
temperatury powierzchni morza
zmiany klimatyczne
Spitsbergen
temperatury powietrza
sea surface temperature
climatic changes
air temperature
Opis:
This work has analysed changeability in water surface temperature in sea areas in the direct vicinity of West Spitsbergen. (Fig. 1). The analysis made use of SST (Sea Surface Temperature) from Reynolds?s data, covering mean monthly values of grids 1 x 1° from the period 1982-2002 (21 years). The changes in SST have been examined both monthly and yearly in 48 grids originating from the region 76-80°N, 006-020°E. A noticeable increase in water temperature was noted in the entire analysed area. The highest positive annual trends in water temperature were noted in the region 77-78°N, 006-007°E located west of Spitsbergen. In this area the mean yearly trends in SST values exceed +0.11°C/year and are highly statistically relevant (p<0.001). The values of trend noted in the areas in the direct vicinity of SW coast of Spitsbergen are +0.07°C to +0.08°C/year (at the latitudes 76-78°N). Farther north the values of the trend are remarkably lower, yet they are still highly statistically relevant. At 80°N the SST trend ranges from +0.006°C to +0.013°C and grows when moving west. At 79°N the observed trend of mean yearly value of SST is within the range from +0.04°C (010°E) to +0.07°C/year (006°E). This indicates that the mean yearly temperature of water in the region west of Spitsbergen has increased by more than 2.5°C over the period of the last 21 years and in coastal waters SW of Spitsbergen by about 1.5°C to 1.7°C. The lowest increase in SST was noted in waters at 80°N, where it did not exceed 0.3°C within 21 years. The increase in water temperature is distributed unevenly in time - since 1995 the rate of the increase has been rapidly growing (see Fig. 2). The changes in yearly SST values, as the analysis indicated, are influenced by the changes in temperature noted mainly in the period from September to February. This proves that the heat sources carried by the West Spitsbergen Current are increasing and that the summer warming of waters is becoming more and more significant. Interannual changeability in SST in the remaining months proves to be relatively low, in extreme cases being zero (water completely frozen). It can be observed especially at 80°N. The yearly changeability in values of SST in waters around SE coasts of Spitsbergen (Storfjorden) is mainly influenced by the temperature of waters in autumn (August ? October), which means that the influence of the summer warming of waters on the yearly SST value in this area has increased.
Źródło:
Problemy Klimatologii Polarnej; 2004, 14; 79-86
1234-0715
Pojawia się w:
Problemy Klimatologii Polarnej
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Climatic change on King George Island in the years 1948–2011
Autorzy:
Kejna, Marek
Araźny, Andrzej
Sobota, Ireneusz
Powiązania:
https://bibliotekanauki.pl/articles/2051395.pdf
Data publikacji:
2013
Wydawca:
Polska Akademia Nauk. Czytelnia Czasopism PAN
Tematy:
Antarctic
South Shetland Islands
climate
air temperature
air pressure
pre−cipitation
sea surface temperature
sea−ice
Źródło:
Polish Polar Research; 2013, 2; 213-235
0138-0338
2081-8262
Pojawia się w:
Polish Polar Research
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Wpływ zmian temperatury wód w głównym nurcie Prądu Zachodniospitsbergeńskiego na temperaturę powietrza na Spitsbergenie Zachodnim (1982-2002)
The influence of the changes in sea surface temperature in the West Spitsbergen Current on the air temperature at West Spitsbergen (1982-2002)
Autorzy:
Kruszewski, G.
Powiązania:
https://bibliotekanauki.pl/articles/260635.pdf
Data publikacji:
2005
Wydawca:
Stowarzyszenie Klimatologów Polskich
Tematy:
temperatura powierzchni oceanu
Prąd Zachodniospitsbergeński
temperatura powietrza
Spitsbergen
air temperature
West Spitsbergen Current
sea surface temperature
Opis:
Praca omawia związki temperatury powietrza na trzech stacjach Spitsbergenu Zachodniego z temperaturą wody powierzchniowej na akwenach położonych po zachodniej stronie wyspy - w nurcie Prądu Zachodniospitsbergeńskiego. Przeprowadzona analiza korelacji ciągów temperatury wody i powietrza wykazała istnienie między nimi istotnych statystycznie związków. Najwyższe współczynniki korelacji (osiągające nawet wartość +0.80) występują w okresie jesieni - między wartościami temperatury powietrza i wody z tego samego miesiąca. Związki pomiędzy roczną temperaturą powietrza a miesięcznymi wartościami temperatury wody są tylko nieznacznie słabsze. W niektórych przypadkach zmiany miesięcznej temperatury powierzchni wody objaśniają ponad 40% zmienności rocznej temperatury powietrza na Spitsbergenie.
This work deals with correlations between SST in the West Spitsbergen Current and air temperature at Spitsbergen (Hornsund, Svalbard-Lufthavn and Ny Alesund). The strongest correlations SST with air temperature have been found in the southern part of the West Spitsbergen Current. In grid [76, 14] synchronic correlations (SST & air temperature in the same month) are strongest and most frequent, occurring in fall and winter months at all three stations (table 1). Correlations in summer months are strong only with closest station at Hornsund (r = 0.67 in July), and decrease with distance to the station. Synchronic correlations between monthly air temperature and SST in next two grids are less frequent and weaker. In [77, 10] grid statistically significant synchronic correlations are limited to fall and winter months and in [78, 06] grid occur in November only (see table 2 & 3). Correlations between monthly SST and annual air temperature are strongest for October, November and December in [76, 14] grid, and coefficients of correlation are very close for all three stations and months (0.62 < r < 0.70) - see Fig. 5. Interesting correlation occur between SST in April and May and annual air temperature values at Spitsbergen, especially strong at Ny Alesund and SST in May in [77, 10] grid (r = 0.66). The changeability of SST in this area in May explains from 31% (Hornsund) to 41% (Ny Alesund) of changeability in annual air temperature at Spitsbergen.
Źródło:
Problemy Klimatologii Polarnej; 2005, 15; 53-63
1234-0715
Pojawia się w:
Problemy Klimatologii Polarnej
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Zlodzenie Hornsundu (Spitsbergen) w sezonie zimowym 2008/2009
Ice conditions in Hornsund (Spitsbergen) during winter season 2008-2009
Autorzy:
Kruszewski, G.
Powiązania:
https://bibliotekanauki.pl/articles/261047.pdf
Data publikacji:
2010
Wydawca:
Stowarzyszenie Klimatologów Polskich
Tematy:
lód morski
sezon lodowy
temperatura wody morskiej
Hornsund
Spitsbergen
sea ice
ice season
sea surface temperature
Opis:
Sezon lodowy 2008/2009 zaczął się w trzeciej dekadzie października, przy czym spadki temperatury powietrza poniżej zera notowano od końca września. Na wodach fiordu w okresie lipiec – wrzesień odnotowywano jedynie postacie lodu lodowcowego. Dopiero spadki temperatury w listopadzie umożliwiły two-rzenie się lodu autochtonicznego w strefie brzegowej. W tym samym czasie do fiordu zaczął okresowo napływać także lód dryfujący z Prądem Sorkapskim. Pokrycie fiordu lodem o dużej zwartości wystąpiło w kilku epizodach, przerywanych kilkudniowymi aktami przynajmniej częściowego odpływania lodu z Hornsundu. Zwarty i bardzo zwarty lód występowała na praktycznie całej powierzchni fiordu w drugiej dekadzie grudnia, pierwszej i drugiej stycznia, lutym, marcu, pierwszej połowie kwietnia i przez kilka dni w maju. Stała pokrywa lodowa utworzyła się poza Isbjornhamną jedynie w skrajnie wschodniej części fiordu, gdzie pod Brepollen przetrwała do pierwszych dni lipca.
This paper presents the sea ice development in the waters of Hornsund Fjord during winter season 2008/2009. In autumn 2008 only brash glacier ice, growlers and bergy bits were present in Hornsund, especially along the coast. Sea ice season started at end of October. Since this time forms of new ice were formed in coastal zone of Isbjornhamna. Because of mild thermal conditions in November and December (Fig. 2, 3) the maximum theoretical ice thickness in inner parts of the fjord could reach 43 cm at the end of the year 2008 (Table 1). In January young coastal ice was formed in Isbjornhamna. Consolidation of close pack ice coming from outside the Hornsund was interrupted few times by increase in air temperature and strong easterly winds, blowing the ice outside again. In the inner bays consolidation of pack ice started probably at end of February. Eastern part of the Hornsund was covered by fast ice since mid of March to the end of June 2009 (Brepollen, Samarinvagen). For over 16 weeks close and very close young pack ice drifted in the Hornsund waters. At the end of April ice concentration in fjord and outside decrease significantly and part of fast ice was broken and removed too. Last episode the Hornsund was covered by very close pack ice drifting from outside took place from 15th till 25th May.
Źródło:
Problemy Klimatologii Polarnej; 2010, 20; 187-196
1234-0715
Pojawia się w:
Problemy Klimatologii Polarnej
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Zlodzenie Hornsundu (Spitsbergen) w sezonie zimowym 2009-2010 (SW Spitsbergen)
Ice conditions in Hornsund (Spitsbergen) during winter season 2009-2010 (SW Spitsbergen
Autorzy:
Kruszewski, G.
Powiązania:
https://bibliotekanauki.pl/articles/260995.pdf
Data publikacji:
2011
Wydawca:
Stowarzyszenie Klimatologów Polskich
Tematy:
lód morski
sezon lodowy
temperatura wody morskiej
Hornsund
Spitsbergen
sea ice
ice season
sea surface temperature
Opis:
Sezon lodowy 2009/2010 zaczął się pod koniec października. Pierwsze postacie autochtonicznego lodu morskiego zaobserwowano w strefie brzegowej Isbjornhamny dopiero 26 października. Spadki dobowej temperatury powietrza poniżej zera sporadycznie notowano od połowy września, jednak dopiero w końcu października obniżyła się ona do poziomu temperatury zamarzania wody morskiej. Wyraźnie wyższe od średnich wieloletnich wartości temperatury powietrza okresu październik - luty nie sprzyjały tworzeniu się lodu. Wyjątkowo łagodne warunki lodowe w rejonie południowego Spitsbergenu uniemożliwiały napływ lodu z zewnątrz aż do początków stycznia 2010. Lód morski o większej zwartości pojawił się w Hornsundzie w zasadzie dopiero po wyraźnym spadku temperatury w marcu. Dochodziło wtedy do całkowitego pokrycia fiordu lodem, włącznie z tworzeniem się w zatokach wewnętrznych lodu stałego. Pokrywa lodu stałego utrzymywała się we wschodniej części fiordu, w fazie maksymalnego rozwoju (od połowy marca do połowy kwietnia) pokrywając od połowy do blisko całej jego powierzchni. W skrajnie wschodniej partii fiordu pod Brepollen przetrwała do końca czerwca.
This article presents the sea ice development in the waters of Hornsund Fjord during winter season 2009/2010. Due to long lasting (November-February) high air temperatures (Fig. 1-2) during autumn 2009 mainly brash glacier ice, growlers and bergy bits were present in Hornsund, especially along the coast. Since end of October forms of new ice were observed in coastal zone of Isbjornhamna. In beginning of January first allochtonic drifting ice entered western part of the fjord. First in situ formed pancake ice was observed in coastal zone in February (Fig. 4). During this month young coastal ice was formed in inner bays of the fjord. Significant decrease in air temperature observed in March was connected with ice development (Fig. 5) on whole fjord area. In eastern part the 'autochtonic' fast ice was formed, in western consolidation of drifting ice occurred. The whole area of Hornsund was covered with fast ice for about two weeks. In eastern part of the fjord (Brepollen, Burgerbukta, Samarinvagen) fast ice existed even in June, with maximum thickness 70-80 cm. Last forms of fast ice was destroyed in first days of July in NE part of Brepollen. In April and May close pack ice drifting outside the Hornsund entered few times the central parts of the fjord, but because of mild temperature conditions consolidation did not start. Usually concentration of ice in central part of the fjord was smaller than outside and do not exceed 4-6/10 (open drift), because of prevailing easterly winds, blowing the ice outside. Such a situation existed since end of March for next six weeks. The last short episode the strips of allochtonic ice entered central part of the fjord took place in beginning of May (Fig. 7).
Źródło:
Problemy Klimatologii Polarnej; 2011, 21; 229-239
1234-0715
Pojawia się w:
Problemy Klimatologii Polarnej
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Zmiany temperatury powierzchni Morza Barentsa w latach 1951-2006
Changes in the sea surface temperature of the Barents Sea in the years 1951-2006
Autorzy:
Zblewski, S.
Powiązania:
https://bibliotekanauki.pl/articles/260773.pdf
Data publikacji:
2007
Wydawca:
Stowarzyszenie Klimatologów Polskich
Tematy:
temperatura powierzchni morza
NAO
Morze Barentsa
Prąd Zachodniospitsbergeński
Prąd Nordkapski
sea surface temperature
Barents Sea
West Spitsbergen Current
North Cape Current
Opis:
Praca charakteryzuje zmiany temperatury powierzchni Morza Barentsa (TPM) zachodzące w okresie 1951–2006. Stwierdzono występowanie słabych, dodatnich i istotnych statystycznie trendów TPM w gridach leżących poza obszarem bezpośredniego oddziaływania ciepłych prądów morskich. Odnotowano słaby i nierównomiernie rozłożony w przestrzeni wzrost temperatury powierzchni morza – silniejszy we wschodniej części Morza Barentsa. W badanym okresie (1951–2006) na obserwowaną zmienność rocznej TPM znacznie silniejszy wpływ wywierają procesy oceaniczne niż zmienność zimowej cyrkulacji atmosferycznej.
The aim of this work was to analyse monthly and annual values of sea surface temperatures of the Barents Sea in the years covering the period from 1951 up to 2006 averaged to chosen grids 2x2° (Fig. 1).The analysis showed that in the course of SST a clearly marked period (1976–1988) of significant decrease in annual values of water temperature was noted, with the minimum observed in 1980 (Fig. 2). This phenomenon is connected with Great Salinity Anomaly.The research showed that the general decrease in annual SST takes place towards north-east and at the same time, following the same direction, the increase in amplitude of inter-annual changes can be observed (Fig. 3). ‘The warm sources of the North Cape Current and West Spitsbergen Current moving away and the transfer of heat from the ocean to the atmosphere are the cause of this situation. This significant drop in annual sea surface temperature in the NE part of the Barents Sea is also influenced by flows of cold and fresh Surface Arctic Waters from the Arctic and Kara seas. There were also great differences observed in the course of annual SST in the western and eastern parts of the examined sea area. (Fig.4). In the eastern part rapid falls in water temperature can be noted by even 0.7°C from year to year. They result from the sea ice spreading and Surface Arctic Waters from the Kara Sea and from the north region of the Barents Sea which cut off the flow of heat from the deeper parts of the sea towards the surface and to the atmosphere.In the examined period weak positive trends in the annual sea surface temperature were observed and they are statistically significant in almost all grids (Tab.1). The strongest trends were noted in the east part of the examined sea area. Positive and statistically significant trends of the monthly SST are observed in summer and autumn in grids located farthest NE.The analysis showed that the influence of winter atmospheric circulation on the temperature of the sea surface is weak or rather moderate (Tab. 2) and that the observed changeability in annual sea surface temperature of the Barents Sea is mainly controlled by oceanic processes.
Źródło:
Problemy Klimatologii Polarnej; 2007, 17; 61-70
1234-0715
Pojawia się w:
Problemy Klimatologii Polarnej
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Modeling the ecosystem response to summer coastal upwelling in the Northern South China Sea
Autorzy:
Jiang, R.
Wang, Y.-S.
Powiązania:
https://bibliotekanauki.pl/articles/47804.pdf
Data publikacji:
2018
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
nutrient
phytoplankton
zooplankton
ecosystem model
coastal upwelling
hydrographic condition
seasonal change
sea surface temperature
South China Sea
Opis:
A coupled three-dimensional physical model and a nitrogen-based nutrient, phytoplankton, zooplankton, and detritus (NPZD) ecosystem model were applied to simulate the summer coastal upwelling system over the continental shelf of northern South China Sea (NSCS) and its impact on hydrographic conditions and ecosystem. The simulated results were comprehensively validated against field and satellite measurements. The model results show that the near shore ecosystem of NSCS has significant responses to the summer coastal upwelling system. The Shantou Coast to the Nanri Islands of Fujian province (YD) and the east of the Leizhou Peninsula (QD) are two main regions affected by NSCS summer coast upwelling. During summer, these two coastal areas are characterized by nearshore cold and high salinity upwelling current. Further, the summer coastal upwelling serves as a perfect nutrient pump, which lifts up and advects nutrient-rich current from deep to surface, from inner shelf to about 30 km outer shelf. This nutrient source reaches its maximum in the middle of July and then begins to decrease. However, the maximum phytoplankton and chlorophyll a do not coincide with the maximum nutrients and delay for about 10 days. Because of the intensive seasonal thermocline and the complicated current transporting through Qiongzhou strait, the ecological responding of QD is less pronounced than YD. This study has a better understanding of the physically modulated ecological responses to the NSCS summer coastal upwelling system.
Źródło:
Oceanologia; 2018, 60, 1
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Dynamic features of successive upwelling events in the Baltic Sea - a numerical case study
Autorzy:
Myrberg, K.
Andrejev, O.
Lehmann, A.
Powiązania:
https://bibliotekanauki.pl/articles/48404.pdf
Data publikacji:
2010
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
Baltic Sea
Hel Peninsula
numerical modelling
coastal upwelling
thermal stratification
sea surface temperature
water column
Polish coast
Opis:
Coastal upwelling often reveals itself during the thermal stratification season as an abrupt sea surface temperature (SST) drop. Its intensity depends not only on the magnitude of an upwelling-favourable wind impulse but also on the temperature stratification of the water column during the initial stage of the event. When a ‘chain’ of upwelling events is taking place, one event may play a part in forming the initial stratification for the next one; consequently, SST may drop significantly even with a reduced wind impulse. Two upwelling events were simulated on the Polish coast in August 1996 using a three-dimensional, baroclinic prognostic model. The model results proved to be in good agreement with in situ observations and satellite data. Comparison of the simulated upwelling events show that the first one required a wind impulse of 28 000 kg m−1 s−1 to reach its mature, full form, whereas an impulse of only 7500 kg m−1 s−1 was sufficient to bring about a significant drop in SST at the end of the second event. In practical applications like operational modelling, the initial stratification conditions prior to an upwelling event should be described with care in order to be able to simulate the coming event with very good accuracy.
Źródło:
Oceanologia; 2010, 52, 1; 77-99
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Upwelling dynamics in the Baltic Sea studied by a combined SAR-infrared satellite data and circulation model analysis
Autorzy:
Gurova, E.
Lehmann, A.
Ivanov, A.
Powiązania:
https://bibliotekanauki.pl/articles/48338.pdf
Data publikacji:
2013
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
Baltic Sea
coastal upwelling
MODIS satellite image
circulation model
synthetic aperture radar
sea surface temperature
wind stress
Źródło:
Oceanologia; 2013, 55, 3
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Prędkość wiatru w rejonie Svalbardu w świetle zmian warunków cyrkulacyjnych i środowiskowych
Surface wind speed in Svalbard area in relation to circulation and environmental changes
Autorzy:
Kruszewski, G.
Powiązania:
https://bibliotekanauki.pl/articles/261013.pdf
Data publikacji:
2010
Wydawca:
Stowarzyszenie Klimatologów Polskich
Tematy:
Svalbard
prędkość wiatru
cyrkulacja atmosferyczna
temperatura powierzchni morza
wind speed
atmospheric circulation
sea surface temperature
correlations
Opis:
Praca charakteryzuje związki prędkości wiatru w dwunastu punktach gridowych z rejonu Svalbardu z ciśnieniem atmosferycznym, wybranymi wskaźnikami cyrkulacyjnymi i temperaturą powierzchni morza w okresie 1950-2009. Związki synchroniczne średniej rocznej i sezonowych prędkości wiatru z ciśnieniem atmosferycznym w tych samych punktach (korelacje ujemne) są zmienne w przestrzeni (silniejsze na północy) i niestabilne w czasie (słabsze w ostatnich 30. latach). Podobnie istotne korelacje prędkości wiatru ze wskaźnikiem cyrkulacji „C” Niedźwiedzia dla Spitsbergenu najliczniej występują zimą i wykazują „przesuwanie się” w czasie z północy na południe badanego obszaru. W ostatnich 30. latach odnotowano także bardzo silne związki zimowej wartości wskaźnika „S” z prędkością wiatru – najwyraźniejsze w NE części Svalbardu. W tym samym rejonie najsilniej zaznaczają się także związki rocznej prędkości wiatru z temperaturą morza.
This paper deals with correlations between surface wind speed in Svalbard area and chosen environmental factors (atmospheric pressure, circulation indices, sea surface temperature). Gridded surface data from NCEP Reanalysis Derived data provided by the NOAA/OAR/ESRL PSD, Boulder Colorado from their Web site at http://www.cdc.noaa.gov/ (wind speed and air pressure), SST from NOAA NCDC ERSST v.2, AO and Nied.wied. (2006) circulation indices were used to statistical analysis over the period 1950-2009. Mean values and linear trend coefficients of wind speed in chosen grid points are in Table 1. The highest trend values are present in northern part of Svalbard in last 30 years. Linear correlation coefficients between wind speed and SLP in same grid points are strongest in northern part too, but correlations are not stable in time (Table 2, 3 and 4). Correlations between wind speed and AO index (monthly values) are week and in most cases statistically insignificant. Significant correlations are frequent between wind speed and C and S indices for winter and annual values (Table 5 and 6). Wind speed during winter in latitudes 80 and 82.5°N in last 29-year period show strong positive correlation with frequency of southern circulation S, which explains from 26 to 60% changeability of wind speed in years 1980-2009. Some correlations between wind speed and SST from grids 2°[fi] x 2°[lambda], situated in same area were found too. The highest coefficients of annual values were found in north of investigated area (wind speed in [82,5; 20] and SST in area between 81 to 83°N, and 19 to 21°E, r = +0,64) . see Fig. 2. In last 30 years significant correlations of this kind were found in NE area of interest (Fig. 3). This is probably connected with changes of the ice edge positions during last years (retreat of sea ice) in the region situated N and NE from Svalbard (Rodrigues 2009).
Źródło:
Problemy Klimatologii Polarnej; 2010, 20; 31-44
1234-0715
Pojawia się w:
Problemy Klimatologii Polarnej
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Spatio-temporal variability of the phytoplankton biomass in the Levantine basin between 2002 and 2015 using MODIS products
Autorzy:
El Hourany, R.
Fadel, A.
Gemayel, E.
Abboud-Abi Saab, M.
Faour, G.
Powiązania:
https://bibliotekanauki.pl/articles/48550.pdf
Data publikacji:
2017
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
spatio-temporal variability
phytoplankton biomass
remote sensing
sea surface temperature
chlorophyll a concentration
phytoplankton bloom
Mediterranean Sea
Opis:
The Levantine basin in the Eastern Mediterranean Sea is subject to spatial and seasonal variations in primary production and physical-chemical properties both on a short and long-term basis. In this study, the monthly means of daily MODIS product images were averaged between 2002 and 2015, and used to characterize the phytoplankton blooms in different bioregions of the Levantine basin. The selected products were the sea surface temperature (SST), the chlorophyll-a concentration (Chl-a), the diffuse attenuation coefficient for downwelling irradiance at 490 nm (Kd_490) and the colored dissolved organic matter index (CDOM_ index). Our results showed that phytoplankton blooms were spatially and temporally variable. They occurred in late autumn at the Nile Delta, in early spring and late summer at the eastern coastline, and in spring at the northeastern coastline. The northern coastline and the open water had a common bloom occurring in winter. The Nile Delta was found to be the most productive area of the Levantine basin showing high Chl-a. Kd_490 and Chl-a present a parallel co-variation indicating a dominance of Case 1 waters in the Levantine basin. The CDOM_index shows a phase shift with the Chl-a fluctuation. A strong inverse correlation was observed between both Chl-a and CDOM_index with SST, connoting an indirect relation represented by a depression of CDOM in summer by photobleaching, and a suppression of the chlorophyll-a concentration due to water stratification, together with nutrient stress. An overestimation of the Chl-a values had been signaled by the use of the CDOM_index, suggesting a correction plan in a latter study.
Źródło:
Oceanologia; 2017, 59, 2
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
A statistical approach to coastal upwelling in the Baltic Sea based on the analysis of satellite data for 1990–2009
Autorzy:
Lehmann, A.
Myrberg, K.
Hoflich, K.
Powiązania:
https://bibliotekanauki.pl/articles/49090.pdf
Data publikacji:
2012
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
Baltic Sea
coastal upwelling
sea surface temperature
statistical analysis
numerical model
1990-2009 period
meteorological data
satellite data
Opis:
A statistical analysis of Baltic Sea upwelling has been carried out to cover, for the first time, the entire sea area for the period 1990–2009. Weekly composite SST maps based on NOAA/AVHRR satellite data were used to evaluate the location and frequency of upwelling. The results obtained were analysed and compared with earlier studies with excellent agreement. Our study enables the most intense upwelling areas in the entire Baltic Sea to be evaluated. According to the analysis of 443 SST maps, the most common upwelling regions are found off the Swedish south and east coasts (frequency 10–25%), the Swedish coast of the Bothnian Bay (16%), the southern tip of Gotland (up to 15%), and the Finnish coast of the Gulf of Finland (up to 15%). Pronounced upwelling also occurs off the Estonian coast and the Baltic east coast (up to 15%), the Polish coast and the west coast of Rugen (10–15%); otherwise the upwelling frequency was between 5 and 10%. Additionally, simulated SST distributions derived from a Baltic Sea numerical model were analysed for the same period. Furthermore, at specific positions close to the coastline, surface winds based on the SMHI meteorological data base were analysed for the same 20-year period. Wind components parallel to the coast were discriminated into favourable and unfavourable winds forcing upwelling. The obtained frequencies of upwelling-favourable winds fit very well the observed upwelling frequencies derived from satellite SST maps. A positive trend of upwelling frequencies along the Swedish east coast and the Finnish coast of the Gulf of Finland was calculated for the period 1990–2009.
Źródło:
Oceanologia; 2012, 54, 3
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Characterization of the Northern Red Seas oceanic features with remote sensing data and outputs from a global circulation model
Autorzy:
Eladawy, A.
Nadaoka, K.
Negm, A.
Abdel-Fattah, S.
Hanafy, M.
Shaltout, M.
Powiązania:
https://bibliotekanauki.pl/articles/48367.pdf
Data publikacji:
2017
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
Red Sea
sea surface temperature
air-sea interaction
wind
atmospheric parameter
remote sensing
chlorophyll a
principal component analysis
Opis:
Sea surface temperature (SST) and surface wind (SW) are considered the most important components in air—sea interactions. This study examines the relationships between SST, SW and various oceanic variables in the northern Red Sea (NRS) during the period of 2000— 2014. The current study is the first attempt to identify the SST fronts and their relationship with the dominant circulation patterns. SST fronts are mapped using the Cayula and Cornillon algorithms. The analysis is performed with available remote sensing and reanalyzed data together with 1/128 HYbrid Coordinate Ocean Model (HYCOM) outputs. Seasonal-trend decomposition procedure based on loess (STL) is applied for trend analysis, and Principal Component Analysis (PCA) is run for the atmospheric parameters. The SST, SW speed and Chlorophyll-a (Chl-a) changes show insignificant trends during the period of 2000—2014. Meridional SST fronts are more significant during the month of January, and fronts that are perpendicular to the sea's axis occur from February to May. Distinct monthly and spatial variations are present in all the examined parameters, although these variations are less pronounced for the wind direction. The SST is mainly controlled by the air temperature and sea level pressure. Significant correlations exist between the SSTand the studied parameters (alongshore wind stress rather than the cross-shore wind stress, surface circulation, MLD, and Chl-a). Surface winds generally flow southeastward parallel to the Red Sea's axis explaining that alongshore wind stress is highly correlated with the studied parameters.
Źródło:
Oceanologia; 2017, 59, 3
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Microplankton size structure induced by a warm-core eddy in the Western Bay of Bengal: Role of Trichodesmium abundance
Autorzy:
Chinnadurai, K.
Retnamma, J.
Nagarathinam, A.
Subramanian, P.R.
Singaram, P.
Shoba, S.
Powiązania:
https://bibliotekanauki.pl/articles/2078908.pdf
Data publikacji:
2021
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
microplankton
size structure
biomass
Trichodesmium
sea surface temperature
wind
sea level
geostrophic current circulation
chlorophyll a
Bengal Bay
Opis:
Mesoscale warm-core eddies are common in the Bay of Bengal (BoB), and this study in the western BoB during Pre-Southwest Monsoon (April 2015) presents how a prolonged warmcore core eddy could modify the microplankton biomass and size structure. To investigate this, field sampling and laboratory analyses were augmented with satellite data sets of sea surface temperature (SST), winds, mean sea level anomaly (MSLA), geostrophic currents and chlorophyll-a. High SST with positive MSLA (≥ 20 cm) and a clockwise circulation, represented the occurrence of a large warm-core eddy in the western BoB. Time series data evidenced that it was originated in the mid of March and persistent there till early June, which in turn caused a decrease in the surface nutrients and chlorophyll-a. The abundance and biomass of microplankton were negligible in the warm-core eddy region. FlowCAM data showed a significant decrease in the autotrophic microplankton parameters in the warm-core eddy (av. 13 ± 9 ind. L−1 and 0.1 ± 0.04 μgC L−1, respectively) as compared to the surrounding locations (av. 227 ± 143 ind. L−1 and 0.8 ± 0.5 μgC L−1, respectively). Low nutrients level in the warm core eddy region favoured high abundance of needle-shaped phytoplankton cells dominated by Trichodesmium cells. As a result, the size of micro-autotrophs in the warm-core eddy was larger (av. 91,760 ± 12,902 μm3 ind.−1) than its outside (av. 50,115 ± 21,578 μm3 ind.−1). This is a deviation from our belief that the oligotrophy decreases the phytoplankton size. We showed here that the above understanding might not be infallible in warm-core eddies in the northern Indian Ocean due to its inducing effect on the Trichodesmium abundance.
Źródło:
Oceanologia; 2021, 63, 3; 283-300
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Mixing characteristics of the subarctic front in the Kuroshio-Oyashio confluence region
Autorzy:
Ke-Lan, Z.
Xi, C.
Ke-Feng, M.
Dong, H.
Sen, H.
Yan, L.
Powiązania:
https://bibliotekanauki.pl/articles/49009.pdf
Data publikacji:
2019
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
Subarctic Front
Kuroshio-Oyashio confluence region
sea surface temperature
salinity
topography
geostrophic flow
thermohaline
structural characteristics
turbulent mixing
Źródło:
Oceanologia; 2019, 61, 1
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Propagation of Upwelling on Western-Coast Sumatra During Madden-Julian Oscillation Event
Autorzy:
Haryanto, Y. D.
Fitrianti, N.
Hartoko, A.
Anggoro, S.
Zainuri, M.
Powiązania:
https://bibliotekanauki.pl/articles/125091.pdf
Data publikacji:
2018
Wydawca:
Polskie Towarzystwo Inżynierii Ekologicznej
Tematy:
MJO
upwelling
coastal upwelling
coastal downwelling
mean sea level pressure
potential velocity
zonal wind
meridional wind
sea surface temperature
Opis:
Madden-Julian oscillation (MJO) is an atmospheric oscillation due to atmospheric phenomenon that occurs due to the uniformity of solar energy received at the surface of the earth, MJO is a natural occurrence in the seaatmosphere system. When the MJO is active, in general there will be a disturbance in the upper air which is then followed by an anomaly at sea surface pressure causing the changes in the wind on the surface. The changes in the surface wind affect the sea surface currents which then cause the occurrence of coastal upwelling downwelling. The upwelling process itself is a process whereby a sea mass is pushed upward along the continent, when the beach is to the left of the wind direction, the ecological transport leads to the mass of water away from the coast. As a result, there is a mass vacuum (divergence) in the coastal area. This mass void will be filled by the mass of water from the inner layer that moves to the surface. Indonesian territory itself is passed by MJO in phases 3, 4 and 5, while for Sumatra region is passed by MJO phase 3 and 4. This research aims to identify the propagation of coastal upwelling during MJO on the west coast of Sumatera, therefore the data of geopotential height, surface pressure sea ( MSLP), zonal and meridional components and sea surface temperature are used to analyze how the MJO effect on the coastal upwelling occurs in the research area. The analysis was conducted in June, July and August by comparing the atmospheric conditions at the time of strong MJO in phases 3 and 4 with normal viewing of anomaly geopotential height and MSLP and then seeing the anomaly surface wind changes from zonal wind (u) and meridional wind (v) and changes in SST in Sumatra region. The result shows that there is a change of GH and MSLP when MJO passes the west coast of Sumatra and then follows the change in the value of u and v and SST to identify the upwelling, while the anomaly change negative SST does not occur when MJO is active but has time lag (lag). In this analysis it was found that SST anomaly occurs when the anomaly changes in both the upper and surface water occurring after 5 days in phases 3, 4 and 5.
Źródło:
Journal of Ecological Engineering; 2018, 19, 1; 122-128
2299-8993
Pojawia się w:
Journal of Ecological Engineering
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
O związkach między zmianami temperatury powierzchni Morza Sargassowego a zmianami temperatury powietrza na półkuli północnej (1880-2007)
Correlations between changes in sea surface temperature of the Sargasso Sea and changes in air temperature of the Northern Hemisphere (1880-2007)
Autorzy:
Marsz, A. A.
Powiązania:
https://bibliotekanauki.pl/articles/295028.pdf
Data publikacji:
2011
Wydawca:
Stowarzyszenie Geomorfologów Polskich
Tematy:
globalne ocieplenie
AMO
Morze Sargassowe
półkula północna
global warming
Sargasso Sea
Northern Hemisphere
Opis:
W artykule przedstawiono występowanie bardzo silnych związków między zmiennością temperatury powierzchni Morza Sargassowego a zmianami globalnych i hemisferycznych anomalii temperatury powietrza. Zmiany temperatury powierzchni Morza Sargassowego najsilniej powiązane są ze zmiennością anomalii temperatury powietrza w Arktyce (64-94°N) i w szerokościach umiarkowanych (44-64°N) półkuli północnej. Przeprowadzone analizy szeregów, z których wyeliminowano trendy, wykazują, że zmienność temperatury powierzchni Morza Sargassowego steruje hemisferycznymi anomaliami temperatury powietrza, nie wykazuje natomiast związków ze zmianami koncentracji CO2 w troposferze. Zmienność temperatury powierzchni Morza Sargassowego odbija zmienność AMO (Atlantic Multidecadal Oscillation), która jest procesem naturalnym. Konkluzją jest stwierdzenie, że obserwowany obecnie wzrost hemisferycznej i globalnej temperatury powietrza stanowi w zasadniczym stopniu wynik działania procesów naturalnych.
This article presents occurrence of very strong correlations between the changeability in sea surface temperature of the Sargasso Sea and changes in global and hemispherical anomalies in air temperature. Changes in sea surface temperature of the Sargasso Sea are correlated in the strongest way with the changeability in air temperature anomalies in the Arctic (64-94°N) and latitudes (44-64°N) of the northern hemisphere. The analysis of series, where trends have been eliminated, indicates that changeability in sea surface temperature of the Sargasso Sea has influence on hemispherical anomalies in air temperature, yet it does not show any correlation with the concentration of CO2 in troposphere. Changes in sea surface temperature of the Sargasso Sea reflect AMO (Atlantic Multidecadal Oscillation) changeability, which is a natural process. A conclusion may be drawn that the currently observed increase in hemispherical and global air temperature is significantly influenced by natural processes.
Źródło:
Landform Analysis; 2011, 15; 17-38
1429-799X
Pojawia się w:
Landform Analysis
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Svalbard as a study model of future High Arctic coastal environments in a warming world
Autorzy:
Piskozub, J.
Powiązania:
https://bibliotekanauki.pl/articles/48795.pdf
Data publikacji:
2017
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
Svalbard Archipelago
climate change
Arctic area
coastal area
sea surface temperature
Spitsbergen fjord
water temperature
sea ice
cloud
Arctic environment
Opis:
Svalbard archipelago, a high latitude area in a region undergoing rapid climate change, is relatively easily accessible for field research. This makes the fjords of Spitsbergen, its largest island, some of the best studied Arctic coastal areas. This paper aims at answering the question of how climatically diverse the fjords are, and how representative they are for the expected future Arctic diminishing range of seasonal sea-ice. This study uses a meteorological reanalysis, sea surface temperature climatology, and the results of a recent one-year meteorological campaign in Spitsbergen to determine the seasonal differences between different Spitsbergen fjords, as well as the sea water temperature and ice ranges around Svalbard in recent years. The results show that Spitsbergen fjords have diverse seasonal patterns of air temperature due to differences in the SST of the adjacent ocean, and different cloudiness. The sea water temperatures and ice concentrations around Svalbard in recent years are similar to what is expected most of the Arctic coastal areas in the second half of this century. This makes Spitsbergen a unique field study model of the conditions expected in future warmer High Arctic.
Źródło:
Oceanologia; 2017, 59, 4
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Rekonstrukcje paleotemperatur w strefie Frontu Polarnego Oceanu Południowego (sektor atlantycki) na podstawie środkowo-górnoplejstoceńskich promienic z odwiertu ODP Leg 177 Site 1091
Paleotemperature reconstructions at the Polar Front in the Southern Ocean (Atlantic sector) based on middle–late Pleistocene radiolarian record from ODP Leg 177 Site 1091
Autorzy:
Kotrys, B.
Powiązania:
https://bibliotekanauki.pl/articles/2075164.pdf
Data publikacji:
2014
Wydawca:
Państwowy Instytut Geologiczny – Państwowy Instytut Badawczy
Tematy:
radiolaria
Southern Ocean
Polar Front
summer sea surface temperature
promienica
Ocean Południowy
Front Polarny
letnia temperatura powierzchni morza
Opis:
Quantitative analysis of radiolarian assemblages, carried out at the Ocean Drilling Program (ODP) Leg 177 Site 1091 (Atlantic sector of the Southern Ocean), provides a well-established summer sea surface temperature (SSST) record from the Polar Front Zone extending back into the Middle Pleistocene at orbital- -submillennial resolution. In order to estimate the SSST, the Imbrie & Kipp method (IKM) and the artificial neural network (ANN) were applied. The SSST records derived from the IKM and ANN display close similarities in paleotemperature fluctuations, amplitudes and absolute values. The ANN-derived SSST estimations display a pattern of slightly more distinct warm events that is closest to the records obtained from EDC (EPICA Dome C) ice cores and ODP Site 1090. The warm events indicate a distinct shift in the extent of the Southern Ocean cold water sphere that must have affected the ocean–atmosphere–ice field interactions and the configuration of high-latitude wind fields. Consistently with the global trend of paleotemperature fluctuation, the SSST record is marked by a distinct shift from low to high glacial/interglacial variability around Termination V. Prior to Termination V, the SSST displays coldest values and low variability. It points to a distinct expansion of the Southern Ocean cold water masses and positional changes of hydrographical fronts during most of the lower Middle Pleistocene.
Źródło:
Przegląd Geologiczny; 2014, 62, 9; 448--455
0033-2151
Pojawia się w:
Przegląd Geologiczny
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Effects of global climate oscillations on intermonthly to interannual variability of sea levels along the English Channel Coasts (NW France)
Autorzy:
Turki, I.
Massei, N.
Laignel, B.
Shafiei, H.
Powiązania:
https://bibliotekanauki.pl/articles/2079277.pdf
Data publikacji:
2020
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
sea level
interannual variability
storm
atmospheric circulation
climatic oscillation
sea surface temperature
sea level pressure
North Atlantic oscillation
English Channel
Opis:
This work examines the multiscale variability in sea level along the English Channel coasts (NW France) using a wavelet multiresolution decomposition of water level values and climate oscillations in order to gain insights in the connection between the global atmospheric circulation and the local-scale variability of the monthly extreme surges. Changes in surges have exhibited different oscillatory components from the intermonthly (~3–6-months) to the interannual scales (~1.5-years, ~2–4-years, ~5–8-years) with mean explained variances of ~40% and ~25% of the total variability respectively. The correlation between the multiresolution components of surges and 28 exceptional stormy events with different intensities has revealed that energetic events are manifested at all timescales while moderate events are limited to short scales. By considering the two hypotheses of (1) the physical mechanisms of the atmospheric circulation change according to the timescales and (2) their connection with the local variability improves the prediction of the extremes, the multiscale components of the monthly extreme surges have been investigated using four different climate oscillations (Sea Surface Temperature (SST), Sea-Level Pressure (SLP), Zonal Wind (ZW), and North Atlantic Oscillation (NAO)); results show statistically significant correlations with ~3–6-months, ~1.5-years, ~2–4-years, and ~5–8-years, respectively. Such physical links, from global to local scales, have been considered to model the multiscale monthly extreme surges using a time-dependent Generalized Extreme Value (GEV) distribution. The incorporation of the climate information in the GEV parameters has considerably improved the fitting of the different timescales of surges with an explained variance higher than 30%. This improvement exhibits their nonlinear relationship with the large-scale atmospheric circulation.
Źródło:
Oceanologia; 2020, 62, 2; 226-242
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Zmiany temperatury powierzchni morza przy zachodnich wybrzeżach Półwyspu Antarktycznego (1900-2012)
Changes in sea surface temperature at the West Coast of the Antarctic Peninsula (1900-2012)
Autorzy:
Marsz, A. A.
Styszyńska, A.
Powiązania:
https://bibliotekanauki.pl/articles/260880.pdf
Data publikacji:
2013
Wydawca:
Stowarzyszenie Klimatologów Polskich
Tematy:
Półwysep Antarktyczny
zmiany SST
ochłodzenie
zmiany klimatu
Antarctic Peninsula
SST change
cool
climate change
Opis:
Praca przedstawia wyniki analizy zmian temperatury powierzchni morza (SST) na akwenie rozciągającym się na NW od północnej części Półwyspu Antarktycznego w latach 1900-2012. Stwierdzono występowanie trzech okresów zmian SST. Pierwszy okres – w latach 1900-1932 – charakteryzował się względnie stabilnym zachowaniem SST (trend zerowy, niewielka zmienność międzyroczna, niska (~0,3°C) średnia roczna SST. W drugim okresie – w latach 1932-2000 – nastąpił wzrost zmienności międzyrocznej SST i stopniowy, trójfazowy wzrost SST (trend +0,006(±0,001)°C•rok-1, sumaryczny wzrost rocznej SST o 0,7 deg do ~+1°C). Najwyższą wartość średnią obszarową SST osiągnęła w roku 2000. Trzeci okres – w latach 2000-2012 – charakteryzował się gwałtownym spadkiem SST (trend –0,048(±0,010)°C•rok-1, spadek SST o ~1 deg). Analiza trendów miesięcznych wykazuje, że zmiany SST stanowią rezultat adwekcji wód o odmiennych zasobach ciepła niesionych z zachodu przez Prąd Cirkumantarktyczny. Zmiany SST na badanym akwenie w ostatnim okresie nie są związane ze zmianami makroskalowej cyrkulacji atmosferycznej (SAM, Południowego Trybu Pierścieniowego, Oscylacji Antarktycznej). Opisane zmiany SST zachodzące w latach 2000-2012 mogą doprowadzić do zmiany trendu zmian temperatury powietrza na stacjach zachodniego wybrzeża Półwyspu Antarktycznego.
The paper presents the results of the analysis of changes in sea surface temperature (SST) of the sea area extending to NW from the northern part of the Antarctic Peninsula in the years 1900-2012. Three periods of SST changes were noted: – period covering years 1900-1932 with relatively stable behaviour of the SST (zero trend, a small inter-annual variability, low average annual SST – ~ 0.3°C), – period covering years 1932-2000 with an increase in inter-annual variability of SST and a gradual three-phase increase in SST (trend 0.006 (± 0.001)°C•yr-1, the total increase in annual SST of 0.7 degrees (up to ~ 1°C). The highest average value of the SST was noted in 2000. – period covering years 2000-2012 – a period of rapid drop in SST (trend –0.048 (± 0.010)°C•yr-1, SST decrease of ~ 1 degree). The analysis of monthly trends shows that the changes in SST are the result of advection of water resources with different heat carried from the west by the Antarctic Circumpolar Current. Changes in SST in the analyzed sea area in the last period are not connected with changes in macro-scale atmospheric circulation (SAM Southern Annular Mode, Antarctic Oscillation). The described changes in the SST occurring in 2000-2012 may lead to changes in the trend of temperature changes at the stations on the west coast of the Antarctic Peninsula.
Źródło:
Problemy Klimatologii Polarnej; 2013, 23; 7-19
1234-0715
Pojawia się w:
Problemy Klimatologii Polarnej
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Stan termiczny Atlantyku Północnego a zlodzenie mórz Barentsa i Grenlandzkiego (1972-1994)
The thermal conditions of the North Atlantic and ice cover of the Barents and Greenland seas (1972-1994)
Autorzy:
Styszyńska, A.
Powiązania:
https://bibliotekanauki.pl/articles/260840.pdf
Data publikacji:
2004
Wydawca:
Stowarzyszenie Klimatologów Polskich
Tematy:
pokrywa lodowa
temperatury powierzchni oceanu
Morze Barentsa
Morze Grenlandzkie
zlodzenie mórz
ice cover
sea surface temperature
Barents Sea
Greenland sea
Opis:
This work deals with correlations between anomalies in SST (sea surface temperature) in the North Atlantic and the sea ice area of the Barents and Greenland seas. This research made use of mean monthly sea ice cover with density >= 10% observed in the Barents and Greenland seas over the period 1972-1994 (calculated on the bases of weekly area of sea ice cover of the above mentioned seas collected in NCDC data set ?1972-1994 Sea Ice Historical Data Set?). The thermal condition of the North Atlantic is characterised by the values of anomalies in mean monthly sea surface temperature (SST) in so called ?controlled grids? (2° x 2°) selected/appointed here by A.A.Marsz (1999a, 2001). Their location is presented in Fig.1. A standard statistical analysis has been used in this research (correlation analysis, regression analysis). The strongest synchronic correlations (observed in the same months) with the sea ice cover of the said seas have been noted in grids located north of the North Atlantic Current and characterising the following waters (Tables 1 and 2): of the Labrador Sea (located within the range of Labrador Current activity) - [50,52], those north of the Gulfstream delta - [40,52] and those located inside the circle of the cyclonic circulation of the North Atlantic - [30,54]. The highest coefficient values of linear correlation, at a level p<0.05 exceeding the statistical significance, were noted in winter months (December, January, February) and those spring ones (April, May, June) as well as in summer - in July and August (the Greenland Sea). There are also several asynchronic correlations. The results of analysis of multiple regression between the SST anomalies and the area of the sea ice cover indicated that the sea areas in which the changeability in their thermal condition has the greatest influence on the formation of the sea ice cover of the said seas are located in the western part of the North Atlantic.
Źródło:
Problemy Klimatologii Polarnej; 2004, 14; 39-57
1234-0715
Pojawia się w:
Problemy Klimatologii Polarnej
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Zmiany stanu termicznego Atlantyku Północnego a przebieg wybranych elementów klimatycznych charakteryzujących klimat Polski
Changes in the thermal state of the North Atlantic and a course of selected climatic elements characterizing the climate of Poland
Autorzy:
Marsz, Andrzej A.
Styszyńska, Anna
Powiązania:
https://bibliotekanauki.pl/articles/2175602.pdf
Data publikacji:
2021
Wydawca:
Polskie Towarzystwa Geofizyczne
Tematy:
Północny Atlantyk
temperatura powierzchni oceanu
SST
Polska
elementy klimatyczne
korelacje
North Atlantic
Sea Surface Temperature
Polska
climatic elements
correlation
Opis:
W pracy rozpatruje się związki między szeregami 7 elementów klimatycznych, obliczonych jako średnie obszarowe dla Polski, a rocznymi szeregami SST na Atlantyku Północnym, obliczonymi dla gridów między 30 a 70°N, w rozdzielczości przestrzennej 10°φ × 10°λ. Okres analizy obejmuje lata 1951-2018. Dane SST pochodzą ze zbioru NOAA NCDC ERSST v.3b, a dane do utworzenia rocznych obszarowych wartości elementów klimatycznych nad Polską stanowią przetworzone dane IMGW BIP (temperatura i wilgotność powietrza, zachmurzenie ogólne, sumy opadów i usłonecznienie) oraz dane pochodzące z reanalizy (SLP i prędkość wiatru). Wyniki analizy ujawniły, że między wszystkimi roz- patrywanymi elementami klimatycznymi a SST na N Atlantyku zachodzą istotne lub (w zdecydowanej przewadze) wysoce istotne korelacje. Rozkład przestrzenny korelacji SST z poszczególnymi elementami przedstawia wyraźne zróżnicowanie geograficzne (rys. 1-7). SST na N Atlantyku w rejonie 30-40°N i 60-40°W wykazuje silne i wysoce istotne korelacje z temperaturą powietrza, sumą usłonecznienia i wilgotnością względną nad Polską. Słabsze, ale przeważnie wysoce istotne korelacje SST z rocznym zachmurzeniem, sumami opadu, SLP i prędkością wiatru obserwuje się w rejonie 50-60°N, 60-20°W. Analiza w większej rozdzielczości przestrzennej przeprowadzona na dwóch obszarach (sekcja S i sekcja N, ryc. 8) wskazała, czego należało się spodziewać, że wartości współczynników korelacji między zmianami SST są wyższe od określonych w analizie o małej rozdzielczości przestrzennej. Oprócz korelacji między SST w poszczególnych punktach i elementami klimatycznymi nad Polską, zachodzą również korelacje między południkowymi gradientami SST między 40 a 60°N. Największą siłę korelacji osiągają te na długościach B (40°W) i C (30°W) - tab. 8. Zmienność SST wykazuje silne związki ze składową długookresową zmian elementów klimatycznych, słabsze ze zmiennością międzyroczną. Analiza relacji logicznych wskazuje, że zmiany SST stanowią przyczynę zmian elementów klimatycznych nad Polską. Zmiany rocznych wartości SST na poszczególnych akwenach objaśniają około 46% wariancji rocznej temperatury powietrza i usłonecznienia w Polsce, 27-30% wariancji wilgotności względnej i prędkości wiatru oraz 12-23% wariancji rocznej zachmurzenia ogólnego, sum opadów oraz SLP. Ponieważ zmienność każdego elementu klimatycznego jest funkcją zmian SST na Atlantyku Północnym, wynika z tego, że zmiany i zmienność klimatu Polski są w znacznej części sterowane przez zmiany stanu termicznego Atlantyku Północnego.
The study considers the relationships between the series of 7 climatic elements, averaged for the area of Poland, and the annual series of SST in the North Atlantic, calculated for grids between 30 and 70°N, at a spatial resolution of 10°φ × 10°λ. The period of analysis covers the years 1951-2018. The SST data comes from the NOAA NCDC ERSST v.3b data base. The data used for the creation of area-averaged annual values of climatic elements over Poland are obtained from IMWM NRI (Institute of Meteorology and Water Management – National Research Institute) – air temperature and humidity, cloud cover, precipitation sums and sunshine duration, and from reanalyzed data – SLP and wind speed. The results of the analysis showed that there are significant or (prevalent) highly significant correlations between all the considered climatic elements and the SST in the North Atlantic. The spatial distribution of the SST correlation with individual elements shows a clear geo graphic differentiation (Fig. 1-7). SST in the North Atlantic in the region of 30°N – 40°N and 60°N - 40°W produces strong and highly significant correlations with air temperature, sum of sunshine duration and relative humidity over Poland). Weaker, but predominantly highly significant correla tions of SST with annual cloudiness, sum of precipitation, SLP and wind speed are observed in the region of 50°N – 60°N, 60°W – 20°W. The analysis based on higher spatial resolution carried out in two areas (section S and section N, Fig. 8) indicated, what could be expected, that the values of the correlation coefficients between changes in SST are higher than those performed for lower spatial resolution. Next to the correlation between the SST defined for individual grids and the climatic ele ments over Poland, the correlations between the longitudinal SST gradients between 40°N and 60°N are also observed. The greatest values of these correlations are noticed for the B (40°W) and C (30°W) profiles – Table 8. SST variability shows strong relation with the long-term component of changes in climatic elements, weaker with inter-annual variability. The analysis of logical relations shows that SST is the cause of changes in climatic elements over Poland. Changes in the annual SST values in individual water bodies explain about 46% of the annual air temperature and sum of sunshine dura tion variance in Poland, 27-30% of the relative humidity and wind speed variance, and 12-23% of the annual variance of cloud cover, sum of precipitation and SLP. Since the variability of each climatic element is a function of SST changes in the North Atlantic, the changes and variability in Poland’s climate are largely driven by changes in the thermal state of the North Atlantic.
Źródło:
Przegląd Geofizyczny; 2021, 3-4; 161--186
0033-2135
Pojawia się w:
Przegląd Geofizyczny
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Synoptic conditions governing upwelling along the Polish Baltic coast
Autorzy:
Bednorz, E.
Polrolniczak, M.
Czarnecki, B.
Powiązania:
https://bibliotekanauki.pl/articles/49142.pdf
Data publikacji:
2013
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
synoptic condition
upwelling
Baltic Sea
Baltic coast
sea surface temperature
marine ecosystem
sea level pressure
wind direction
wind speed
weather condition
Źródło:
Oceanologia; 2013, 55, 4
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Comparison of primary productivity estimates in the Baltic Sea based on the DESAMBEM algorithm with estimates based on other similar algorithms
Autorzy:
Stramska, M.
Zuzewicz, A.
Powiązania:
https://bibliotekanauki.pl/articles/48944.pdf
Data publikacji:
2013
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
ocean colour
satellite remote sensing
Baltic Sea
primary productivity
algorithm
marine ecosystem
chlorophyll concentration
sea surface temperature
photosynthetic active radiation
latitude
Źródło:
Oceanologia; 2013, 55, 1
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Aggregating sea surface hydrodynamic forecasts from multi-models for European seas
Autorzy:
Frishfelds, V.
She, J.
Murawski, J.
Nielsen, J. W.
Powiązania:
https://bibliotekanauki.pl/articles/24201473.pdf
Data publikacji:
2023
Wydawca:
Uniwersytet Morski w Gdyni. Wydział Nawigacyjny
Tematy:
weather research and forecasting
search and rescue
operational ocean forecasting
European Satellite Systems
surface current
drifting sea surface temperature
European waters
Opis:
Maritime information services supporting European agencies such as the FRONTEX require European‐wide forecast solutions. Following a consistent approach, regional and global forecasts of the sea surface conditions from Copernicus Marine Service and national met‐ocean services are aggregated in space and time to provide a European‐wide forecast service on a common grid for the assistance of Search and Rescue operations. The best regional oceanographic model solutions are selected in regional seas with seamless transition to the global products covering the Atlantic Ocean. The regional forecast models cover the Black Sea, Mediterranean Sea, Baltic Sea, North Sea and combine the North Sea – Baltic Sea at the Danish straits. Two global models have been added to cover the entire model domain, including the regional models. The aggregated product is required to have an update frequency of 4 times a day and a forecasting range of 7 days, which most of the regional models do not provide. Therefore, smooth transition in time, from the shorter timerange, regional forecast models to the global model with longer forecast range are applied. The set of parameter required for Search and Rescue operations include sea surface temperature and currents, waves and winds. The current version of the aggregation method was developed for surface temperature and surface currents but it will be extended to waves in latter stages. The method relies on the calculation of aggregation weights for individual models. For sea surface temperature (SST), near real‐time satellite data at clear‐sky locations for the past days is used to determine the aggregation weights of individual forecast models. A more complicated method is to use a weighted multi‐model ensemble (MME) approach based on best forecast features of individual models and possibly including near real time observations. The developed method explores how satellite observations can be used to assess spatially varying, near real time weights of different forecasts. The results showed that, although a MME based on multiple forecasts only may improve the forecast, if the forecasts are unbiased, it is essential to use observations in the MME approach so that proper weights from different models can be calculated and forecast bias can be corrected. It is also noted that, in some months, e.g., June in Baltic Sea, even SST was assimilated, the forecast still show quite high error. There are also visible difference between different Copernicus Marine Environment Monitoring Service (CMEMS) satellite products, e.g. OSTIA and regional SST products, which can lead different forecast quality if different SST observation products are assimilated.
Źródło:
TransNav : International Journal on Marine Navigation and Safety of Sea Transportation; 2023, 17, 3; 533--541
2083-6473
2083-6481
Pojawia się w:
TransNav : International Journal on Marine Navigation and Safety of Sea Transportation
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Demonstration of a new indicator for studying upwelling in the Northern South China Sea
Autorzy:
Lin, L.
Wang, Y.-S.
Sun, C.-C.
Li, N.
Wang, H.
Mitchell, B.G.
Wu, M.-L.
Song, H.
Wu, J.-F.
Powiązania:
https://bibliotekanauki.pl/articles/48889.pdf
Data publikacji:
2011
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
China Sea
cluster analysis
multivariate statistical analysis
principal component analysis
remote sensing
satellite monitoring
sea surface temperature
silicate
spatial distribution
upwelling
Opis:
In order to demonstrate that silicate (SiO3-Si) can be used as an indicator to study upwelling in the northern South China Sea, hierarchical cluster analysis (CA) and principle component analysis (PCA) were applied to analyse the metrics of the data consisting of 14 physical-chemical-biological parameters at 32 stations. CA categorized the 32 stations into two groups (low and high nutrient groups). PCA was applied to identify five Principal Components (PCs) explaining 78.65% of the total variance of the original data. PCA found important factors that can describe nutrient sources in estuarine, upwelling, and non-upwelling areas. PC4, representing the upwelling source, is strongly correlated to SiO3-Si. The spatial distribution of silicate from the surface to 200 m depth clearly showed the upwelling regions, which is also supported by satellite observations of sea surface temperature.
Źródło:
Oceanologia; 2011, 53, 2
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Rola cyrkulacji atmosferycznej i zmian temperatury powierzchni morza w kształtowaniu zmienności temperatury powietrza na stacjach zachodniego wybrzeża Półwyspu Antarktycznego
Role of the atmospheric circulation and sea surface temperature changes in the formation of air temperature variability at the stations western coast of the Antarctic Peninsula
Autorzy:
Marsz, A. A.
Powiązania:
https://bibliotekanauki.pl/articles/260804.pdf
Data publikacji:
2013
Wydawca:
Stowarzyszenie Klimatologów Polskich
Tematy:
Półwysep Antarktyczny
roczna temperatura powietrza
ochłodzenie
temperatura powierzchni morza
wiatr geostroficzny
Antarctic Peninsula
annual air temperature
cooling
sea surface temperature
geostrophic wind
Opis:
Praca omawia przyczyny spadku temperatury powietrza obserwowanego po roku 2000 na stacjach północnego krańca Półwyspu Antarktycznego oraz osłabienia tempa wzrostu temperatury na stacjach środkowej i południowej części Półwyspu. Analiza przyczyn zachodzących zmian temperatury powietrza wskazuje, że czynnikiem odpowiedzialnym za spadki temperatury jest silny spadek temperatury powierzchni morza (dalej SST – sea surface temperature) na wodach Oceanu Południowego rozpościerających się na NW od Półwyspu Antarktycznego. Zarówno zmiany SST, jak i zmienność południkowych, ujemnych (z sektora północnego) składowych wiatru geostroficznego, które objaśniają łącznie około 60% wariancji rocznej temperatury powietrza na stacjach omawianego obszaru, zachodzą pod wpływem czynników naturalnych.
The paper presents the results of research into the role of changes in SST and atmospheric circulation variability in the formation of annual air temperature at the station the South Shetland Islands and the western coast of the Antarctic Peninsula. Four stations have been chosen for the analysis: Bellingshausen, Esperanza, Faraday / Vernadsky and Rothera. In this region (Fig. 2) these stations have the longest and most complete series of temperature measurements. After an analysis, annual average values of SST anomalies of the sea area extending from the N and NW of the area in question (variable SSTA20; see Fig. 2) and the average annual values of zonal and meridional components of geostrophic wind at the level of 1000 hPa (four points marked in Fig. 2) have been chosen as factors influencing the temperature variations at these stations. Regression analysis showed that SST variability and variability of meridional components of geostrophic wind of the points 60°S, 60°W and 65°S, 70°W have a strong, statistically significant influence on the variability of annual air temperature at the analyzed stations . Variability of zonal components of geostrophic wind does not play a significant role in shaping the temperature variation. The variability of meridional component of geostrophic wind and SST anomalies explain a total of about 60% of the observed variance of annual air temperature at the studied stations throughout the observation period (Table 2). The cause of the collapse of the strong positive trend of temperature after 2000, which occurred at these stations, is the occurrence of a sharp fall in SST in the analyzed sea area (Fig. 5). As a result, the South Shetland Islands and northern edge of the Antarctic Peninsula after 2000 began to cool, and the positive trend at stations in central and southern part of the Antarctic Peninsula became much weaker (Fig. 1). The analysis shows that the variation of meridional components of geostrophic wind and SST variability controlling temperature changes at the stations of west coast of the Antarctic Peninsula are a sign of natural processes. They are directly (SST anomalies) or indirectly (meridional components of geostrophic wind) the result of oceanic processes. This observed variability in temperature in the north of the region and the western coast of the Antarctic Peninsula, including a strong positive trend observed in the years 1951-2000 and its subsequent collapse in the years 2000-2012, must be regarded as a manifestation of natural variability.
Źródło:
Problemy Klimatologii Polarnej; 2013, 23; 21-42
1234-0715
Pojawia się w:
Problemy Klimatologii Polarnej
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Wpływ zmian temperatury wód w Bramie Farero-Szetlandzkiej na temperaturę powietrza w Arktyce (1950-2005)
The influence of changes of the water temperature in the Faeroe-Shetland Channel on the air temperature in Arctic (1950-2005)
Autorzy:
Marsz, A. A.
Przybylak, R.
Styszyńska, A.
Powiązania:
https://bibliotekanauki.pl/articles/260775.pdf
Data publikacji:
2007
Wydawca:
Stowarzyszenie Klimatologów Polskich
Tematy:
temperatura powierzchni oceanu
temperatura powietrza
Brama Farero-Szetlandzka
Prąd Norweski
Arktyka
sea surface temperature
air temperature
Faeroe-Shetland Channel
Norwegian Current
Arctic
Opis:
Praca analizuje związki między wskaźnikiem charakteryzującym zasoby ciepła w wodach atlantyckich wprowadzanych do Prądu Norweskiego, a dalej przez Prąd Zachodniospitsbergeński i Prąd Nordkapski do Arktyki, a roczną temperaturą powietrza w Arktyce. Analizę związków przeprowadzono dla Arktyki jako całości oraz jej sektorów: atlantyckiego, syberyjskiego, pacyficznego kanadyjskiego i sektora Morza Baffina. Wykazano istnienie silnie rozciągniętych w czasie (od 0 do 9 lat opóźnienia) związków z temperaturą powietrza w całej Arktyce, potwierdzających istotny statystycznie wpływ zmian zasobów ciepła w wodach na zmiany temperatury powietrza w Arktyce. Związki regionalne wykazują silne zróżnicowanie - na wzrost zasobów ciepła niemal natychmiastowo reaguje temperatura powietrza w Arktyce Atlantyckiej, z 2-6 letnim opóźnieniem temperatura powietrza w Arktyce Kanadyjskiej. Związki z temperaturą powietrza w sektorach syberyjskim i pacyficznym nie przekraczają progu istotności statystycznej. Zmiany temperatury powietrza w sektorze Morza Baffina wyprzedzają w czasie zmiany zasobów ciepła w wodach atlantyckich wprowadzanych następnie do Arktyki. To ostatnie może stanowić przyczynę okresowości w przebiegu temperatury powietrza w niektórych częściach Arktyki i strefy umiarkowanej.
Styszyńska (2005, 2007) has shown the existence of clear statistical relationships between heat contents in the waters of the Atlantic flowing towards the Arctic via the Norwegian, West Spitsbergen, and North Cape currents and the air temperature in Spitsbergen, Jan Mayen and Hopen between the years 1982 and 2002. These relationships extend in time: following rises in the heat content of the waters of the Norwegian Current, an increase in air temperature follows in the same year and the following year. Heat contents in the Atlantic waters flowing towards the Arctic are assessed according to the average sea surface temperature (SST) in the Faeroe-Shetland Channel (grid 62°N, 004°W) from January to April. These values are used to calculate a determining indicator such as FS1-42L, established as the average of two successive years: data from one year (k) and the year preceding it (k-1). The aim of this work is to investigate whether there are relationships between FS1-42L and the air temperature in both the whole of the Arctic and in individual Arctic sectors and, if so, what the character of these relationships is. The data analysed were a set of yearly air temperatures for the whole of the Arctic and for particular Arctic sectors (fig. 2) according to Przybylak (2007), as well as a set of monthly SST values including values calculated for the FS1-42L indicator (NOAA NCDC ERSST v.1; Smith and Reynolds, 2002). The primary methodology employed was Cross-Correlation Function Analysis. The FS1-42L was established as a first value, with the yearly air temperature used as a lagged value. The analysis was carried out for a 55-year period, from 1951 to 2005. The analysis showed that, taken as a whole, relationships between heat contents leading to the Arctic and air temperature over the whole of the Arctic (calculated from averages of individual sectors) were not particularly significant, though there was marked significance in these relationships from year 0 (fig. 3) to year +9 (fig. 4). The strongest relationships were those from the same year for which the FS1-42L was dated, after which relationships grew gradually weaker, until they finally disappeared in the tenth year. In the Atlantic sector of the Arctic the relationship was strong and almost immediate (fig 5). In the Siberian (fig. 6) and Pacific (fig. 7) sectors there was an absence of statistically significant relationships, and any that did exist were weak, with varying degrees of ?echo? in air temperature reactions. Air temperature in the Canadian sector (fig. 8) reacted to increases in heat contents with a delay of 2 to 6 years, with the strongest relations from FS1-42L being noted with a 5-year delay. The situation in Baffin Bay was entirely different, with air temperature changes preceding changes in the heat contents of the waters of the Faeroe-Shetland Channel by 1 to 6 years. The maximum strengths of these relations were -5 and -4 per year (fig. 9). Analysis of the reasons for these regional variations in the influence of FS1-42L on air temperature allows us to conclude that a major role is played by the bathymetry of the Arctic Ocean. Atlantic waters sinking beneath Arctic Surface Water (ASW) contribute to changes in the temperature of Arctic Intermediate Water (AIW). Independent of the routes taken by the processes, the influence of AIW on the air temperatures in the Siberian and Pacific sectors is limited, with these sectors being isolated by wide shelves from the Arctic Ocean. In the Canadian sector, which is separated by narrow shelves from deep-water parts of the Arctic Ocean and is situated a relatively short distance from the Atlantic sector, the influence of heat contents on the ASW is apparent, with a certain delay. Changes in the air temperature of the Baffin Bay sector are related to the variable activity of the Labrador Current, bringing cold waters to the North from the Gulf Stream delta. The force of strong cooling waters from the Labrador Current, with the appropriate delay, result in a lessening of the heat contents in the Faroe-Shetland Channel. Because of the fact that there is a strong positive correlation between the yearly air temperatures of the Canadian and Baffin Bay sectors, a chain of dependencies emerges: air temperature in the American sectors of the Arctic the flow of Atlantic waters FS1-42L air temperature in the Atlantic Arctic sector Ž air temperature in the Canadian sector should generate quasi-periodic (> 10 years) air temperature courses.
Źródło:
Problemy Klimatologii Polarnej; 2007, 17; 45-59
1234-0715
Pojawia się w:
Problemy Klimatologii Polarnej
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Zmiany temperatury wody powierzchniowej na morzach Arktyki Rosyjskiej i ich konsekwencje dla żeglugi na Północnej Drodze Morskiej (1979-2016)
Changes of sea surface temperature in the Russian Arctic Seas and their implications for shipping in the Northern Sea Route (1979-2016)
Autorzy:
Styszyńska, A.
Pastusiak, T.
Powiązania:
https://bibliotekanauki.pl/articles/260798.pdf
Data publikacji:
2016
Wydawca:
Stowarzyszenie Klimatologów Polskich
Tematy:
temperatura wody powierzchniowej
zmiany temperatury wody
Północna Droga Morska
Arktyka Rosyjska
sea surface temperature
changes in water temperature
Northern Sea Route
Russian Arctic
Opis:
Praca omawia zmiany średniej miesięcznej temperatury wody powierzchniowej na morzach Arktyki Rosyjskiej w latach 1979-2016. Stwierdzono, że w badanym okresie następował powolny wzrost temperatury wody. Jednakże tylko na Morzu Barentsa był on istotny statystycznie we wszystkich miesiącach roku, a w SW części Morza Karskiego oraz w zachodniej części Morza Czukockiego w okresie od czerwca do grudnia. W analizowanym 38.leciu największy wzrost temperatury wody powierzchniowej miał miejsce na Morzu Wschodniosyberyjskim (+0,57°C/10 lat w sierpniu i +0,44°C/10 lat we wrześniu) oraz w SW części Morza Karskiego w lipcu (+0,53°C/10 lat). W dalszym ciągu na wszystkich morzach, poza Morzem Barentsa, do czerwca włącznie temperatura wody ma wartości niższe od temperatury jej zamarzania przy swoistym dla danego morza zasoleniu. Najpóźniej temperaturę zamarzania osiągają wody Morza Barentsa gdzie w ostatniej dekadzie (2006-2015) na podejściu do północnego wejścia na PDM rzadko kiedy temperatura wody spadała poniżej temperatury zamarzania oraz wody Morza Czukockiego (w grudniu). Oznacza to, że statki pokonujące PDM w listopadzie będą miały szansę przepłynąć ją po „czystej” wodzie lub w cienkich, młodych lodach, które dla współczesnych statków nie stanowią większego zagrożenia.
The paper discusses changes of the mean monthly sea surface temperature on the Russian Arctic seas in the years 1979-2016. It was found that during the period under investigation there was a slow increase in water temperature. However, only in the Barents Sea it was statistically significant in all months of the year, and in the SW part of the Kara and western Chukchi seas from June to December. In the analyzed 38 years the highest rise in surface water temperature was recorded in the East Siberian Sea (+0.57°C/decade in August and +0.44°C/decade in September) and in the SW Kara Sea in July (+0.53°C/decade). Still on all these seas, except for the Barents Sea, until June inclusive, the water temperature was lower than its freezing temperature for a particular salinity specific for the sea. At the latest, freezing temperatures reached the waters of the Barents Sea, where in the last decade (2006-2015) at the approach to the north entrance of the Northern Sea Route (NSR) rarely water temperature has fallen below the freezing point. At the same time, the Chukchi Sea waters reached freezing temperatures in December. This means that vessels sailing through the NSR in November will have the chance to pass it through "ice free" water or in thin, young ice, which for modern ships is not a major threat.
Źródło:
Problemy Klimatologii Polarnej; 2016, 26; 165-177
1234-0715
Pojawia się w:
Problemy Klimatologii Polarnej
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Decadal fluctuations in North Atlantic water inflow in the North Sea between 1958-2003: impacts on temperature and phytoplankton populations
Autorzy:
Leterme, S.C.
Pingree, R.D.
Skogen, M.D.
Seuront, L.
Reid, P.C.
Attrill, M.J.
Powiązania:
https://bibliotekanauki.pl/articles/48966.pdf
Data publikacji:
2008
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
phytoplankton
continental slope
ocean circulation
plankton
Atlantic water
plankton community
climate
temperature
dynamics
fluctuation
pelagic ecosystem
North Sea
circulation
population
sea surface temperature
Opis:
The circulation of Atlantic water along the European continental slope, in particular the inflow into the North Sea, influences North Sea water characteristics with consequent changes in the environment affecting plankton community dynamics. The long-term effect of fluctuating oceanographic conditions on the North Sea pelagic ecosystem is assessed. It is shown that (i) there are similar regime shifts in the inflow through the northern North Sea and in Sea Surface Temperature, (ii) long-term phytoplankton trends are influenced by the inflow only in some North Sea regions, and (iii) the spatial variability in chemicophysical and biological parameters highlight the influence of smaller scale processes.
Źródło:
Oceanologia; 2008, 50, 1; 59-72
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Zima 2019-2020 roku : historyczne minimum zlodzenia Bałtyku
Winter 2019-2020 : the historical minimum of the ice cover of the Baltic Seas
Autorzy:
Marsz, Andrzej A.
Styszyńska, Anna
Powiązania:
https://bibliotekanauki.pl/articles/2175601.pdf
Data publikacji:
2021
Wydawca:
Polskie Towarzystwa Geofizyczne
Tematy:
Morze Bałtyckie
maksimum pokrywy lodowej
cyrkulacja atmosferyczna
klimat
temperatura powierzchni morza
Baltic Sea
maximum ice cover
atmospheric circulation
climate
sea surface temperature
Opis:
W sezonie zimowym 2019-2020 wystąpiło historyczne minimum rocznej maksymalnej powierzchni zlodzonej Bałtyku (MIE) w całym 301.letnim okresie obserwacji (1720-2020). MIE osiągnęła w tym sezonie lodowym wartość zaledwie 37 tys. km2, przy średniej (1720-2019) równej 213 tys. km2 i (odchyleniu standardowym) równym 112,9 tys. km2. W pracy rozpatruje się zespół procesów, które doprowadziły do osiągnięcia przez MIE ekstremalnie niskiej wartości. Analizę przeprowadzono dla okresu ostatnich 70 lat (1951-2020). Główną przyczyną wystąpienia w sezonie zimowym 2019-2020 tak niskiej MIE jest zmiana reżimu cyrkulacji środkowotroposferycznej w latach 1987-1989, polegająca na przejściu epoki cyrkulacyjnej E w epokę cyrkulacyjną W. W ostatniej epoce cyrkulacyjnej frekwencja makro-typu W według klasyfikacji Wangengejma-Girsa wzrosła znacznie powyżej wartości średnich (ryc. 3). Ponieważ zmienność frekwencji makrotypów cyrkulacji środkowotroposferycznej steruje zmiennością wartości elementów klimatycznych, w tym temperaturą powietrza, usłonecznieniem, prędkością wiatru (tab. 1), zmiana frekwencji makrotypów doprowadziła do zmiany bilansu cieplnego Bałtyku. Po roku 1988 wzrosła akumulacja ciepła słonecznego w wodach Bałtyku w okresie letnim i zmniejszyły się strumienie ciepła jawnego i ciepła parowania z powierzchni Bałtyku w okresach zimowych. W efekcie tych zmian temperatura powierzchni morza (SST) systematycznie wzrastała i SST na coraz większych powierzchniach morza nie osiągała w okresach zimowych temperatury krzepnięcia. W przebiegu SST pojawił się trend dodatni i tym samym wystąpił ujemny trend w przebiegu MIE. Spowodowało to zmianę reżimu lodowego Bałtyku, w ostatniej epoce cyrkulacyjnej silnie zmniejszyła się średnia wartość MIE i znacznie wzrosła częstość występowania łagodnych sezonów lodowych, w tym sezonów ekstremalnie łagodnych (MIE < 81.0 tys. km2). Wystąpienie w okresie ostatniej zimy (DJFM; 2019-2020) bardzo silnej cyrkulacji strefowej (ryc. 6), będącej skutkiem dominacji frekwencji makrotypu W (tab. 3) doprowadziło do wystąpienia bardzo silnych anomalii temperatury powietrza i anomalii SST (ryc. 7), uniemożliwiających, poza skrajnymi północnymi akwenami Bałtyku (Zatoka Botnicka), rozwój zlodzenia. Wystąpienie historycznego minimum MIE w sezonie lodowym 2019-2020 stanowi wynik ewolucji pola SST Bałtyku, zacho-zącej pod wpływem zmiany charakteru cyrkulacji atmosferycznej po roku 1988.
In the winter season 2019-2020, there was a historical minimum of the annual maximum ice extent (MIE) of the Baltic Sea within the entire 301-year observation period (1720-2020). In this ice season MIE reached a value of only 37,000 km2, with an average (1720-2019) of 213,000 km2 and (standard deviation) of 112,900 km2. The paper considers the set of pro-cesses that led to the MIE reaching an extremely low value. The analysis was carried out for the last 70 years (1951-2020). The main reason for the occurrence of such a low MIE in the winter season 2019-2020 is the change in the mid-tropospheric circulation regime in the years 1987-1989, consisting in the transition of the E circulation epoch into the W circulation epoch. In the last period of circula-tion epoch the frequency of the W macrotype according to the Wangengejm-Girs classifica-tion increased significantly above the mean values (Fig. 3). As the variability of the frequency of the macrotypes of the mid-tropospheric circulation controls the variability of the values of climatic elements, including air temperature, sunshine duration, wind speed (Table 1), the change in the frequency of macrotypes led to a change in the thermal balance of the Baltic Sea. After 1988 the accumulation of solar heat in the waters of the Baltic Sea in the Summer period increased, and the fluxes of sensible heat and the heat of evaporation from the surface of the Baltic Sea in Winter periods decreased. As a result of these changes the sea surface temperature (SST) was systematically increasing, and the SST on increasingly larger sea sur-faces did not reach the freezing point in Winter. There was a positive trend in the course of SST and thus a negative trend in the course of MIE. This caused a change in the ice regime of the Baltic Sea. In the last circulation epoch the mean value of MIE decreased significantly and the frequency of mild ice seasons increased significantly, including extremely mild seasons (MIE <81,000 km2). The occurrence of a very strong zonal circulation during the last winter (DJFM; 2019-2020) (Fig. 6), resulting from the dominance of the W macrotype frequency (Table 3), led to a very strong air temperature anomalies and to the SST anomalies (Fig. 7), preventing, apart from the extremely northern waters of the Baltic Sea (Gulf of Bothnia), the development of the ice cover. The occurrence of the historical MIE minimum in the 2019-2020 ice season is the result of the evolution of the Baltic SST field, which took place as a result of the change in the nature of the atmospheric circulation after 1988.
Źródło:
Przegląd Geofizyczny; 2021, 3-4; 227--249
0033-2135
Pojawia się w:
Przegląd Geofizyczny
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Long term water level and surface temperature changes in the lagoons of the Southern and Eastern Baltic
Autorzy:
Dailidiene, I.
Baudler, H.
Chubarenko, B.
Navrotskaya, S.
Powiązania:
https://bibliotekanauki.pl/articles/47846.pdf
Data publikacji:
2011
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
Baltic Sea
climate change
coastal lagoon
Curonian Lagoon
erosion
lagoon
linear regression
long-term variation
sea surface temperature
variability
Vistula Lagoon
water level
Źródło:
Oceanologia; 2011, 53, (1-TI)
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Zmienność maksymalnej miąższości czynnej warstwy zmarzliny w rejonie Bellsundu (W Spitsbergen) w okresie 1986-2009
Changeability of maximal thickness of active permafrost layer in the Bellsund region (W Spitsbergen) in the period 1986-2009
Autorzy:
Marsz, A. A
Pękala, K.
Repelewska-Pękalowa, J.
Styszyńska, A.
Powiązania:
https://bibliotekanauki.pl/articles/261035.pdf
Data publikacji:
2011
Wydawca:
Stowarzyszenie Klimatologów Polskich
Tematy:
wieloletnia zmarzlina
warstwa czynna
temperatura powietrza
cyrkulacja atmosferyczna
temperatura powierzchni morza
Spitsbergen
permafrost
active layer
air temperature
atmospheric circulation
sea surface temperature
Opis:
W pracy przebadano wpływ temperatury powietrza, cyrkulacji atmosferycznej i temperatury powierzchni morza na Prądzie Zachodniospitsbergeńskim na zmiany maksymalnej miąższości czynnej warstwy zmarzliny na Calypsostrandzie (Bellsund) w latach 1986-2009. Stwierdzono, że podstawowym czynnikiem klimatycznym, regulującym tą zmienność jest temperatura powietrza w Svalbard-Lufthavn, co pozwala na rekonstrukcję przebiegu zmian miąższości czynnej warstwy zmarzliny na Calypsostrandzie w okresie 1911-2009. W badanym okresie nie zachodzą istotne związki między miąższości czynnej warstwy zmarzliny a zmiennością wskaźników cyrkulacji hemisferycznej (AO) i regionalnej (NAO). Bardzo silny wpływ na miąższość czynnej warstwy zmarzliny na Calypsostrandzie wywierają zmiany temperatury powierzchni Morza Grenlandzkiego w rejonie przepływu ciepłego Prądu Zachodniosptsbergeńskiego.
The measurements of thickness of the sling part of permafrost thawing in summer i.e. permafrost active layer were made on Spitsbergen in the Bellsund region in 1986-2009 within the polar expedition programs accomplished by Maria Curie Skłodowska University, Lublin. The investigations included the seaside plain Calypsostranda situated on the western side of Recherche Fiord in the forefield of the glaciers Scott and Renard (Fig. 1) constituting a complex of raised marine terraces formed during the glacioisostatic movements. Maximal thickness of active permafrost (CWCmax) was determined using the sounding method in 10 chosen points localized within the geocomplexes typical of tundra (Fig. 2). The average many years' maximal values of active layer thickness are presented in Table 1. The paper presents the results of studies on the effect of air temperature, atmospheric circulation and sea surface temperature on Western Spitsbergen Current on the variation of maximal thickness of active permafrost layer. As follows from the studies the interyear changes of maximal thickness of the active layer on Calypsostranda are relatively susceptible to the changes of air temperature which indicates prompt susceptibility to changes. The tendency towards the increase of ground thawing depth on Calypsostranda in 23 years under consideration is not stable and can change significantly depending on temperature. Though there is no doubt that during the last 4-5 years there have appeared signs of quickened increase of active layer thickness on Calypsostranda (Fig. 4), the conclusion about permanent degradation of permafrost seems to be risky at present. Of the climatic factors the essential one affecting the interannual changeability of maximal thickness of the active layer on Calypsostranda is air temperature in Svalbard-Lufthaven. The regression analysis showed (Equation 1) that the variance CWmax is explained best by the merged May and June temperatures (SVsumT_V-VI) and the average March temperature (SVT_III) (Fig. 5). Changeability of these both variables accounts for 83% variance CWCmax. Equation [1] allows to reconstruct the course of changes of maximal thickness of the active layer on Calypsostranda in 1911-2009 (Fig. 6). In the studied period distinct and essential connections between CWCmax on Calypsostranda and changeability of hemispheric circulation indices (AO) or regional (NAO) were not found. However, temperature changes of Greenlandic Sea surface in the region of warm Western Spitsbergen Current flow (Table 3) affect significantly on air temperature on Spitsbergen and as a result on active layer thickness on Calypsostranda. As the hitherto course of maritime processes indicates a gradual decrease in heat resources carried by Western Spitsbergen Current, one can deduce that air temperature in the region of Spitsbergen will drop in near future. That will probably lead to a decrease in thawing depth on Calypsostranda. Differentiation in active layer thickness is dependent on local factors such as configuration, aspect of slopes, vegetation cover as well as kind and extent of water mobility in covers as it was reported earlier.
Źródło:
Problemy Klimatologii Polarnej; 2011, 21; 133-154
1234-0715
Pojawia się w:
Problemy Klimatologii Polarnej
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Monitoring the effect of upwelling on the chlorophyll a distribution in the Gulf of Finland (Baltic Sea) using remote sensing and in situ data
Autorzy:
Uiboupin, R.
Laanemets, J.
Sipelgas, L.
Raag, L.
Lips, I.
Buhhalko, N.
Powiązania:
https://bibliotekanauki.pl/articles/48503.pdf
Data publikacji:
2012
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
spatio-temporal variability
chlorophyll a
distribution
variability
upwelling
Baltic Sea
Finland Gulf
sea surface temperature
remote sensing
spatial distribution
ecological status
satellite image
Opis:
The spatio-temporal variability of chlorophyl a (Chl a) caused by a sequence of upwelling events in the Gulf of Finland in July–August 2006 was studied using remote sensing data and field measurements. Spatial distributions of sea surface temperature (SST) and Chl a concentration were examined using MODIS and MERIS data respectively. The MERIS data were processed with an algorithm developed by the Free University of Berlin (FUB) for case 2 waters. Evaluation of MERIS Chl a versus in situ Chl a showed good correlation (r2 = 0.67), but the concentration was underestimated. The linear regression for a 2 h window was applied to calibrate MERIS Chl a. The spatio-temporal variability exhibited the clear influence of upwelling events and related filaments on Chl a distribution in the western and central Gulf. The lowest Chl a concentrations were recorded in the upwelled water, especially at the upwelling centres, and the highest concentrations (13 mg m−3) were observed about two weeks after the upwelling peak along the northern coast. The areas along the northern coast of upwelled water (4879 km2) on the SST map, and increased Chl a (5526 km2) two weeks later, were roughly coincident. The effect of upwelling events was weak in the eastern part of the Gulf, where Chl a concentration was relatively consistent throughout this period.
Źródło:
Oceanologia; 2012, 54, 3
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Trendy temperatury powierzchni oceanu w sektorze pacyficznym Oceanu Południowego w ostatnim 25-leciu
Trends in the sea surface temperature in the Pacific sector of the Southern Ocean in the las 25 year period (1980-2004
Autorzy:
Marsz, A. A.
Powiązania:
https://bibliotekanauki.pl/articles/260641.pdf
Data publikacji:
2005
Wydawca:
Stowarzyszenie Klimatologów Polskich
Tematy:
temperatury powierzchni oceanu
ochłodzenie powierzchni oceanu
Ocean Południowy
sektor pacyficzny
Antarktyka
sea surface temperature
sea surface cooling
climatic changes
Southern Ocean
Pacific sector
Antarctic
Opis:
Praca omawia zmiany temperatury powierzchni wody (TPO) sektora pacyficznego Oceanu Południowego w pasach szerokości 60 i 50°S, zachodzące w przekrojach miesięcznych i rocznych. Stwierdzono występowanie ujemnych trendów TPO w całym pasie 60°S, z czego ponad 1/3 współczynników trendu jest istotna i wysoce istotna statystycznie. Obszary silnego ochłodzenia powierzchni oceanu tworzą tam dwa ośrodki: pierwszy w rejonie 170°E - 140°W, drugi - 120-080°W. W obu ośrodkach najsilniejsze spadki TPO następują w miesiącach chłodnej pory roku (maj - sierpień), w drugim - dodatkowo - stosunkowo silne ochłodzenie zaznacza się w miesiącach ciepłej pory roku (styczeń - marzec). Na szerokości 50°S ochłodzenie jest znacznie słabsze - istotne statystycznie zmiany TPO zaznaczają się wyłącznie po wschodniej stronie sektora (100-080°W), gdzie również występują trendy ujemne. Kumulacja istotnych i nieistotnych statystycznie trendów miesięcznych prowadzi do zaznaczania się na obszarze około 54% powierzchni sektora pacyficznego Oceanu Południowego istotnych statystycznie, ujemnych trendów rocznej TPO. Na pozostałym obszarze badanego sektora bądź brak realnych zmian TPO, bądź występuje tendencja do słabego spadku temperatury. Przebiegi temperatury rocznej wskazują, że w ośrodku zachodnim (60°S, 170°E -140°W) TPO konsekwentnie obniża się od początku obserwacji (1980 rok), gdy we wschodniej części sektora pacy-ficznego (120-080°W) cały obserwowany w 25-leciu trend stanowi konsekwencję silnego spadku rocznej TPO w ciągu ostatnich 7 lat (1997-2004).
This work deals with monthly and annual changes in sea surface temperature (SST) of the Pacific sector of the South Ocean observed in 60°- 50°S latitudinal bands. The occurrence of negative trends of SST was noted in the entire 60° band and 1/3 of the trend coefficients is statistically significant and highly significant. The regions marked by strong cooling of ocean surface are formed by two centres - one 170° - 140°W and the other extending from 120° to 080°W. The greatest decrease in sea surface temperature in both centres takes place during cold season (May - August), in the other centre there is also additional quite strong cooling in the months of warm season (January - March). In the latitude 50°S the cooling is much weaker - statistically significant changes in SST are observed only in the eastern part of the Pacific region (100°- 080°W) where negative trends are also noted. Cumulating of statistically significant and non-significant monthly trends leads to statistically significant negative trends in annual SST observed in 54% of the area in the Pacific sector of the South Ocean. In the remaining area of the Pacific sector of the South Ocean there are either no visible changes in the sea surface temperature or there is tendency of weak decrease in temperature. The courses of annual SST indicate that in the western region (60S°, 170° -140°W) the SST has been decreasing constantly since the beginning of the observational period (since the year 1980), whereas in the eastern part of the Pacific sector (120°- 080°W) the whole trend observed over the 25-year period results from strong decrease in annual SST in the period of last 7 years (1997-2004).
Źródło:
Problemy Klimatologii Polarnej; 2005, 15; 17-26
1234-0715
Pojawia się w:
Problemy Klimatologii Polarnej
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Czynniki zmian klimatycznych w środkowym i górnym plejstocenie : ich zapis geologiczny w osadach Oceanu Południowego oraz rdzeniach lodowych
Climate change indicators in middle and late Pleistocene as reflected in sediments of Southern Ocean and ice core records
Autorzy:
Kotrys, B.
Powiązania:
https://bibliotekanauki.pl/articles/2075570.pdf
Data publikacji:
2016
Wydawca:
Państwowy Instytut Geologiczny – Państwowy Instytut Badawczy
Tematy:
plejstocen
Ocean Południowy
morskie stadium izotopowe
temperatura powierzchni morza
glacjał
interglacjał
Pleistocene
Southern Ocean
Marine Isotope Stage
sea surface temperature
glacials
interglacials
Opis:
Climate changes during the Pleistocene were driven by large-scale orbital perturbations as well as by internal feedbacks on the Earth. One of the main roles in climate modelling is played by the Southern Ocean that is a great source of sea ice, carbon dioxide, dissolved silica and nutrients. Numerous sediment and ice records derived from the Southern Ocean and Antarctica document high-resolution climatic changes that allow us a better understanding of global climate evolution. Consistently with the global climatic trend, several sea surface temperature (SST) records of the Southern Ocean are marked by a distinct shift from low to high glacial/interglacial variability around Termination V (T V), called the Mid-Brunhes Event (MBE). Prior to T V, the Southern Ocean’s SST displays lower values and low variability. It points to a distinct expansion of the Southern Ocean cold water masses and positional changes of hydrographical fronts during most of the lower Middle Pleistocene, which started in the Pliocene. Beside large climatic changes, several abrupt distinct warming and cooling phases have been recognized. Some of them (MIS 22–19, MIS 11 and MIS 5) show similarities to MIS 1, which could be used for future climate predictions. In this paper we would like to present the middle and late Pleistocene climatic mechanisms in the Southern Ocean, and to show SST changes in relation to the hydrographic frontal movement, sea ice development and CO2 oscillations.
Źródło:
Przegląd Geologiczny; 2016, 64, 1; 35--42
0033-2151
Pojawia się w:
Przegląd Geologiczny
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Tools for optimizing performance of VOYages at sea
Autorzy:
Johannessen, J. A.
Perrin, A.
Gaultier, L.
Herlédan, S.
Pouplin, C.
Collard, F.
Maze, J. P.
Dussauze, M.
Rapp, J.
Fanebust, R.
Andersen, S.
Franks, O.
Meyer, R.
Powiązania:
https://bibliotekanauki.pl/articles/1841544.pdf
Data publikacji:
2021
Wydawca:
Uniwersytet Morski w Gdyni. Wydział Nawigacyjny
Tematy:
voyage at sea
Copernicus Marine Environment Monitoring Service
optimization tool
synthetic aperture radar
finite-size lyapunov exponent
route optimization
sea surface temperature
route optimization algorithm
Opis:
The aim of the TOPVOYS project supported by the MarTERA ERA-Net Cofund program within the European Commission is to advance and implement analyses tools and decision support system for voyage optimisation. Based on marine weather analyses and forecasts combined with near real time satellite-based observations of wind, wave and surface current conditions as well as sea surface temperature fields the best shipping route are examined. The proposed approach aims to identify the optimum balance between minimisation of transit time and fuel consumption as well as reduction of emissions without placing the vessel at risk to damage and or crew injury. As such it is compliant with the International Maritime Organization guidelines [6] for ship routeing to keep the traffic smooth and avoid accidents, notably in the presence of unfavorable marine meteorological conditions. The tool performances will be demonstrated both in post-voyage analyses and real time operations for the North Atlantic Ocean crossings, voyages from Europe through the Mediterranean Sea and the Suez Channel to the Far East (e.g. China, South Korea) and voyages around Southern Africa.
Źródło:
TransNav : International Journal on Marine Navigation and Safety of Sea Transportation; 2021, 15, 1; 233-239
2083-6473
2083-6481
Pojawia się w:
TransNav : International Journal on Marine Navigation and Safety of Sea Transportation
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Changes of water physical features as indicators of the convection movements in the coastal zone of the Pomeranian Bay
Zmiany cech fizycznych wód jako wskaźnik ruchów konwekcyjnych w strefie brzegowej Zatoki Pomorskiej
Autorzy:
Kowalewska-Kalkowska, H.
Lejman, J.
Powiązania:
https://bibliotekanauki.pl/articles/85081.pdf
Data publikacji:
2003
Wydawca:
Akademia Pomorska w Słupsku
Tematy:
water temperature
salinity change
sea water
air temperature
wind condition
physical feature
indicator
convection movement
coastal zone
Pomeranian Bay
sea surface temperature
summer period
meteorological condition
surface water
Źródło:
Baltic Coastal Zone. Journal of Ecology and Protection of the Coastline; 2002-2003, 07
1643-0115
Pojawia się w:
Baltic Coastal Zone. Journal of Ecology and Protection of the Coastline
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Zmiany zlodzenia Morza Karskiego w latach 1979-2015. Podejście systemowe
Changes of sea ice extent on the Kara Sea in the years 1979-2015. System approach
Autorzy:
Styszyńska, A.
Marsz, A. A.
Powiązania:
https://bibliotekanauki.pl/articles/260907.pdf
Data publikacji:
2016
Wydawca:
Stowarzyszenie Klimatologów Polskich
Tematy:
pokrywa lodowa
zmiany powierzchni lodów
THC
temperatura powietrza
temperatura wody powierzchniowej
Morze Karskie
Arktyka
Atlantyk Północny
ice cover
changes in sea-ice extent
air temperature
sea surface temperature
Kara Sea
Arctic
North Atlantic
Opis:
Praca omawia zmiany powierzchni lodów na Morzu Karskim i mechanizmy tych zmian. Scharakteryzowano przebieg zmian zlodzenia, ustalając momenty skokowego zmniejszenia się letniej powierzchni lodów. Rozpatrzono wpływ cyrkulacji atmosferycznej, zmian temperatury powietrza i zmian zasobów ciepła w wodach na zmiany zlodzonej tego morza. Analizy wykazały, że wszystkie zmienne opisujące zarówno stan zlodzenia jak i stan elementów klimatycznych są ze sobą wzajemnie powiązane przez różnego rodzaju sprzężenia zwrotne. W rezultacie tworzy się rekurentny system, w którym zmiany powierzchni lodów, wpływając na przebieg innych elementów systemu (temperaturę powietrza, temperaturę wody powierzchniowej) w znacznej części same sterują swoim rozwojem. Zmiennością całego tego systemu sterują zmiany intensywności cyrkulacji termohalinowej (THC) na Atlantyku Północnym, dostarczając do niego zmienne ilości energii (ciepła). Reakcja systemu zlodzenia Morza Karskiego na zmiany natężenia THC następuje z 6.letnim opóźnieniem.
The work discusses the changes in the ice extent on the Kara Sea in the years 1979-2015, i.e. in the period for which there are reliable satellite data. The analysis is based on the average monthly ice extent taken from the database AANII (RF, St. Peterburg). 95% of the variance of average annual ice extent explains the variability of the average of ice extent in ‘warm' season (July-October). Examination of features of auto-regressive course of changes in ice extent shows that the extent of the melting ice area between June and July (marked in the text RZ07-06) can reliably predict the ice extent on the Kara Sea in August, September, October and November as well as the average ice extent in a given year. Thus the changes in ice extent can be treated as a result of changes occurring within the system. Analysis of the relationship of changes in ice extent and variable RZ07-06 with the features of atmospheric circulation showed that only changes in atmospheric circulation in the Fram Strait (Dipole Fram Strait; variable DCF03-08) have a statistically significant impact on changes in ice extent on the Kara Sea and variable RZ07-06. The analysis shows no significant correlation with changes in ice extent or AO (Arctic Oscillation), or NAO (North Atlantic Oscillation). Variable RZ07-06 and variable DCF03-08 are strongly correlated and their changes follow the same pattern. Analysis of the relationship of changes in ice extent and variable RZ07-06 with changes in air temperature (the SAT) showed the presence of strong relationships. These correlations differ significantly depending on the region; they are much stronger with changes in air temperature in the north than in the south of the Kara Sea. Temperature of cold period (average temperature from November to April over the Kara Sea, marked 6ST11-04) has a significant effect on the thickness of the winter ice and in this way the thickness of ice in the next melting season becomes part of the "memory" (retention) of past temperature conditions. The thickness of the winter ice has an impact on the value of the variable RZ07-06 and on changes in ice extent during the next ‘warm’ season. As a result, 6ST11-04 explains 62% of the observed variance of the annual ice extent on the Kara Sea. SAT variability in the warm period over the Kara Sea (the average of the period July-October, marked 6ST07-10) explains 73% of the variance of annual ice extent. SAT variability of the N part of the Kara Sea (Ostrov Vize, Ostrov Golomjannyj), which explains 72-73% of the variance ice extent during this period, has particularly strong impact on changes in ice extent during warm period. These stations are located in the area where the transformed Atlantic Waters import heat to the Kara Sea. Analysis of the impact of changes in sea surface temperature (SST) variability on sea ice extent indicated that changes in SST are the strongest factor that has influence on ice extent. The variability of annual SST explains 82% of the variance of annual ice extent and 58% of the variance of the variable RZ07-06. Further analysis showed that the SAT period of warm and annual SAT on the Kara Sea are functions of the annual SST (water warmer than the air) but also ice extent. On the other hand, it turns out that the SST is in part a function of ice extent. All variables describing the ice extent and its changes as well as variables describing the nature of the elements of hydro-climatic conditions affecting the changes in ice extent (atmospheric circulation, SAT, SST) are strongly and highly significantly related (Table 9) and change in the same pattern. In this way, the existence of recursion system is detected where the changes in ice extent eventually have influence on ‘each other’ with some time shift. The occurrence of recursion in the system results in very strong autocorrelation in the course of inter-annual changes in ice extent. Despite the presence of recursion, factors most influencing change in ice extent, i.e. the variability in SST (83% of variance explanations) and variability in SAT were found by means of multiple regression analysis and analysis of variance. Their combined impact explains 89% of the variance of the annual ice extent on the Kara Sea and 85% of the variance of ice extent in the warm period. The same rhythm of changes suggests that the system is controlled by an external factor coming from outside the system. The analyses have shown that this factor is the variability in the intensity of the thermohaline circulation (referred to as THC) on the North Atlantic, characterized by a variable marked by DG3L acronym. Correlation between the THC signal and the ice extent and hydro-climatic variables are stretched over long periods of time (Table 10). The system responds to changes in the intensity of THC with a six-year delay, the source comes from the tropical North Atlantic. Variable amounts of heat (energy) supplied to the Arctic by ocean circulation change heat resources in the waters and in SST. This factor changes the ice extent and sizes of heat flux from the ocean to the atmosphere and the nature of the atmospheric circulation, as well as the value of the RZ07-06 variable, which determines the rate of ice melting during the ‘warm’ season. A six-year delay in response of the Kara Sea ice extent to the THC signal, compared to the known values of DG3L index to the year 2016, allows the approximate estimates of changes in ice extent of this sea by the year 2023. In the years 2017 to 2020 a further rapid decrease in ice extent will be observed during the ‘warm' period (July-October), in this period in the years 2020-2023 ice free conditions on the Kara Sea will prevail. Ice free navigation will continue from the last decade of June to the last decade of October in the years 2020-2023. Since the THC variability includes the longterm, 70-year component of periodicity, it allows to assume that by the year 2030 the conditions of navigation in the Kara Sea will be good, although winter ice cover will reappear.
Źródło:
Problemy Klimatologii Polarnej; 2016, 26; 109-156
1234-0715
Pojawia się w:
Problemy Klimatologii Polarnej
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Rozmiary i przebieg współczesnego ocieplenia Arktyki w rejonie mórz Barentsa i Karskiego
Dimension and course of the present warming of the Arctic in the region of the Barents and Kara seas
Autorzy:
Marsz, A. A.
Styszyńska, A.
Zblewski, S.
Powiązania:
https://bibliotekanauki.pl/articles/260739.pdf
Data publikacji:
2008
Wydawca:
Stowarzyszenie Klimatologów Polskich
Tematy:
współczesne ocieplenie
temperatura powietrza
trendy temperatury powietrza
temperatura powierzchni morza
wody atlantyckie
delta Golfsztromu
Arktyka
Morze Barentsa
Morze Karskie
present warming
air temperature
sea surface temperature
Atlantic waters
Gulf Stream
Arctic
Barents Sea
Kara sea
Opis:
Celem pracy była analiza rozmiarów i przebiegu współczesnego (1980-2007) ocieplenia wschod-niej części Arktyki Atlantyckiej w rejonie mórz Barentsa i Karskiego. Stwierdzono, że w tym okresie ocieplenie posiadało charakter pulsacyjny, składało się z kolejnych, coraz silniejszych wzrostów temperatury powietrza, oddzielanych od siebie okresami ochłodzeń. Poszczególnym fazom ocieplenia odpowiadają wzrosty transportu ciepłych wód atlantyckich do Morza Barentsa i wzrosty temperatury powierzchni morza (SST). Najwyraźniejsze fazy ocieplenia wystąpiły w latach 1988-1990 i 2002-2007. Najsilniejsze wzrosty temperatury zaznaczyły się w za-chodniej i północno-zachodniej części obszaru, najsłabsze na południowych wybrzeżach mórz Barentsa i Karskiego. Wzrost rocznej temperatury powietrza między okresami 1980-1982 a 2005-2007 może być szacowany na około 5°C w północo-zachodniej części obszaru (N i NW część Morza Barentsa) do około 1.5°C na południowo-wschod-nich wybrzeżach Morza Barentsa i południowo-zachodnich wybrzeżach Morza Karskiego. Analiza trendów wyka-zała, że statystycznie istotne trendy roczne występują jedynie na północnych i zachodnich skrajach badanego obszaru. W trendach sezonowych największą liczbę statystycznie istotnych trendów na poszczególnych stacjach obserwuje się latem. Średnie obszarowe trendy są jednakowe jesienią, zimą i wiosną (+0.065°Cźrok-1), wyraźnie niższe latem (+0.044°Cźrok-1), istotne statystycznie od wiosny do jesieni, nieistotne zimą. Analiza trendów mie-sięcznych wykazuje, że obraz, jaki daje analiza trendów sezonowych wiosny (III-V), lata (VI-VIII), jesieni (IX-XI) i zimy (XII-II) nie daje rzeczywistego obrazu rozkładu zmian temperatury w czasie. Wartości trendów miesięcznych rozłożone są skrajnie nierównomiernie, w okresie od listopada do stycznia oraz w kwietniu średnie wartości tren-dów na omawianym obszarze są większe od 0.1°Cźrok-1, w pozostałych miesiącach zawierają się w granicach od +0.020 (luty) do +0.052°Cźrok-1 (sierpień). Główną przyczyną obserwowanych zmian temperatury powietrza w rejonie obu mórz jest wzrost zasobów ciepła w wodach atlantyckich transportowanych do Arktyki z tropików i subtropików przez cyrkulację oceaniczną. Wzrost zasobów ciepła w wodach kierowanych z delty Golfsztromu na północ prowadzi z 1-4 letnim opóźnieniem do wzrostu SST i spadku powierzchni lodów na Morzu Barentsa, w mniejszym stopniu na Morzu Karskim. Oba czynniki (zmiany SST i zmiany powierzchni lodów) regulują następnie temperaturę powietrza, głównie poprzez wpływ na rozmiary strumieni ciepła z powierzchni morza do atmosfery. Znaczny wpływ na modyfikowanie zmian temperatury powietrza w stosunku do zmian wymuszanych przez zmiany SST ma regionalna cyrkulacja atmosferyczna, natomiast hemisferyczna (Oscylacja Arktyczna) i makroregionalna (NAO) mody cyrkulacyjne wywierają w rozpatrywanym okresie znikomy wpływ na zmiany temperatury powietrza, zmiany SST i zmiany powierzchni lodów morskich na morzach Barentsa i Karskim.
The aim of this work is the analysis of the dimensions and the course of contemporary (1980-2007) warming of the east part of the Atlantic Arctic in the region of the Barents and Kara seas (fig. 1, tab. 1). It has been noted that the warming in that period had pulsating character, was made up of consecutive stronger and stronger increases in air temperature, separated from each other by cooling periods (fig. 4, 6-7). The increase in the transport of warm Atlantic waters into the Barents Sea and the increase in SST (sea surface temperature) of this sea correspond to the subsequent phases of warming. The most significant phases of warming were noted in the years 1988-1990 and 2002-2007 (fig. 4). The strongest increases in temperature were marked in the west and north- west part of this region and the weakest in the south coast of the Barents and Kara seas (fig. 6-7). The annual increase in air temperature between the periods 1980-1982 and 2005-2007 may be estimated as about 5°C in the north-west part of this region (N and NW part of the Barents Sea) and as 1.5°C in the south-east coast of the Barents Sea and south – west coast of the Kara Sea (fig. 8). The analysis of trends indicated that the statistically significant annual trends are only observed in the north and west parts of the examined region (fig. 9-10). The greatest number of statistically significant trends in seasonal trends at the observed stations was noted in summer (table 2). The mean regional trends are equal in autumn, winter and spring (+0.065°Cźyear-1), significantly lower in summer (+0.044°Cźyear-1), statistically significant from spring to autumn and not significant in winter. The analysis of monthly trends indicated that the picture obtained from the analysis of seasonal trends (spring – III-V, summer – VI-VIII, autumn – IX-XI, winter – XII-II) does not reflect the real picture of the distribution of changes in temperature in time. The values of monthly trends are distributed in an extremely uneven way, in the period from November to January and in April the mean values of trends in the examined region are larger than 0.1°C year-1 and in the remaining months can be found within the limits from +0.020 (February) to +0.052°C year-1 (August) - see table 3. The main reason for the observed changes in air temperature in the region of both seas can be attributed to the increase in heat resources in the Atlantic waters transported to the Arctic from the tropics and sub-tropics with the oceanic circulation. The increase in heat resources in the waters imported north from the Gulf Stream, leads to the increase, delayed by 1-4 year in SST and to the decrease in the sea ice cover of the Barents Sea and, to a lesser extent, of the Kara Sea (tab. 4-6, fig. 13 and 15). Both factors (changes in SST and changes in sea ice extent) further control the air temperature mainly via the influence on the size of flow from the sea surface to the atmosphere. Great influence on the modification of changes in air temperature in relation to changes forced by changes in SST has the regional atmospheric circulation, whereas the hemispherical (AO) and macro-regional (NAO) circulation modes have little influence on the changes in air temperature, on changes in SST and on changes in sea ice extent of the Barents and Kara seas.
Źródło:
Problemy Klimatologii Polarnej; 2008, 18; 35-67
1234-0715
Pojawia się w:
Problemy Klimatologii Polarnej
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Oddziaływanie Bałtyku na kształtowanie się temperatury i wilgotności powietrza oraz prędkości wiatry w strefie polskiego wybrzeża
Effects of the Baltic Sea on air temperature and humidity and on wind speed at the Polish coast
Autorzy:
Kozminski, Cz.
Swiatek, M.
Powiązania:
https://bibliotekanauki.pl/articles/35507.pdf
Data publikacji:
2012
Wydawca:
Polska Akademia Nauk. Instytut Agrofizyki PAN
Opis:
W pracy przeprowadzono analizę wpływu wód Bałtyku na kształtowanie się temperatury i wilgotności powietrza oraz prędkości wiatru w strefie polskiego wybrzeża w układzie miesięcznym. Wykorzystano dane z 8 par stacji meteorologicznych IMGW usytuowanych w większości południkowo, za dwa dostępne okresy: 1961-1990 i 1986-2010. Określono wielkości dodatnich i ujemnych odchyleń analizowanych elementów między stacjami położonymi nad brzegiem i w głębi lądu, a także daty okresów z ocieplającym i ochładzającym oddziaływaniem morza na warunki termiczne w strefie wybrzeża. Stwierdzono, że długość okresu z ocieplającym oddziaływaniem wód Bałtyku na termikę powietrza w strefie wybrzeża wynosi średnio ponad 215 dni, a ochładzający wpływ występuje przeważnie od trzeciej dekady marca do pierwszej dekady sierpnia, powodując najwyższe różnice w maju i czerwcu. W miarę oddalania się od Bałtyku w głąb lądu zmniejsza się gradient średniej miesięcznej temperatury powietrza, który wynosi od około 0,3oC w zachodniej do około 0,4oC/10 km w północnej części wybrzeża. Gradient miesięcznej wartości wilgotności względnej powietrza w strefie wybrzeża jest największy w maju oraz kwietniu i wynosi, w zależności od położenia stacji i pory roku, średnio od 1,5 do 2,3%/10 km, a w wąskim pasie wybrzeża około 5,0 %/10 km (np. wzdłuż profilu Ustka – Słupsk). Największe różnice w miesięcznych wartościach prędkości wiatru między stacjami usytuowanymi na wybrzeżu i w głębi lądu występują w okresie zimy, szczególnie w styczniu (od 1,2 do 2,3 m·s-1). Obliczony dla stycznia gradient prędkości wiatru wynosi od 0,35 do 0,80 m·s-1/10 km, a w maju, kiedy występują najmniejsze różnice, od 0,14 do 0,50 m·s-1/10 km. W analizowanych latach zaznacza się tendencja wcześniejszego występowania (przyspieszenia) wiosną początku ochładzającego wpływu Bałtyku na termikę powietrza na wybrzeżu. Natomiast w drugiej połowie lata na większości stacji występuje istotny i wysoce istotny trend przyspieszenia początku ocieplającego wpływu wód Bałtyku na warunki termiczne powietrza na wybrzeżu.
The paper analyses the effects of the Baltic Sea on monthly patterns of air temperature and humidity and on wind speed at the Polish coast. The analysis is based on 1961-1990 and 1986-2010 data from 8, mostly longitudinal, pairs of meteorological stations operated by the Institute of Meteorology and Water Management (IMWM). Differences in the parameters analysed between the coastal and inland stations as well as dates signifying periods with warming and cooling effects of the sea on thermal conditions at the coast were determined. The duration of the period with warming effects of the Baltic on the air temperature at the coast was found to average in excess of 215 days. Cooling effects of the proximity to the sea occurred usually from the third decade of Akademia Rolnicza w SzczecinieMarch through the first decade of August, the largest differences being recorded in May and June. The gradient of the monthly mean air temperature was observed to decrease with increasing distance from the sea; the gradient ranged from about 0.3 to about 0.4oC/10 km in the western and northern part of the coast, respectively. The gradient of the monthly mean relative air humidity at the coast was at its highest in May and April and averaged, depending on the station and season, from 1.5 to 2.3%/10 km, a gradient of about 5.0%/10 km being observed in the narrow coastal strip (e.g., along the Ustka-Słupsk transect). The largest differences in monthly mean wind speed between the coastal and inland stations were observed in winter, particularly in January (from 1.2 to 2.3 m s-1). The wind speed gradient calculated for January ranged from 0.35 to 0.80 m s-1/10 km; at the time of the smallest differences, in May, the gradient ranged from 0.14 to 0.50 m s-1/10 km. The data sets for the two periods analysed revealed a tendency towards an earlier occurrence (i.e., acceleration) of the onset of vernal cooling effects of the Baltic on the thermal conditions at the coast. On the other hand, in the second half of the summer, most stations showed a significant and highly significant trend evidencing acceleration of the onset of warming effects of the Baltic on the thermal conditions at the coast.
Źródło:
Acta Agrophysica; 2012, 19, 3
1234-4125
Pojawia się w:
Acta Agrophysica
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Temperatura wód atlantyckich na głębokości 200 m w Prądzie Zachodniospitsbergeńskim (76.5°N, 9-12°E), a temperatura powierzchni morza w tym rejonie (1996-2011)
Temperature of the Atlantic Water at a Depth of 200 m in the West Spitsbergen Current (76.5°N, 9-12°E) and the Sea Surface Temperature in this Region (1996-2011)
Autorzy:
Marsz, A. A.
Styszyńska, A.
Powiązania:
https://bibliotekanauki.pl/articles/260985.pdf
Data publikacji:
2012
Wydawca:
Stowarzyszenie Klimatologów Polskich
Tematy:
Arktyka Atlantycka
Prąd Zachodniospitsbergeński
wody atlantyckie
SST
korelacje
Atlantic Arctic
West Spitsbergen Current
Atlantic Water
correlation
Opis:
Praca omawia rozkład w czasie i przestrzeni związków, jakie zachodzą między temperaturą Wód Atlantyckich w Prądzie Zachodniospitsbergeńskim i temperaturą powierzchni morza (SST) na wodach wokół-spitsbergeńskich. Wykorzystano pomiary temperatury Wód Atlantyckich prowadzone przez Instytut Oceanologii PAN na głębokości ~200 m na profilu 76,5°N, 9-12°E (oznaczenie TW200). Szereg TW200 jest krótki (1996-2011) i stanowi średnią z pomiarów wykonywanych w lipcu i sierpniu. Celem pracy jest określenie w jakiej mierze stosowane powszechnie zbiory danych SST charakteryzują na tych akwenach zasoby ciepła w głębszych warstwach wód. Stwierdzono, że zbiory te dobrze charakteryzują podpowierzchniowe zasoby ciepła Wód Atlantyckich w chłodnej porze roku – okresie zimowego wychładzania oceanu – od listopada do kwietnia-maja. Jest to związane z działaniem intensywnej konwekcji. W sezonie ciepłym (od czerwca do października) związki między TW200 i SST stają się słabe ze względu na tworzenie się w przypowierzchniowej warstwie oceanu warstwy wygrzanych wód, stabilnych hydrostatycznie. W wyniku tego kontakt wód powierzchniowych z wodami zalegającymi głębiej ustaje i zmiany SST kształtują się pod wpływem zmian bilansu cieplnego powierzchni oceanu, bez większego wpływu zasobów ciepła wód zalegających głębiej. W przekrojach miesięcznych najsilniejsze związki między TW200 i SST zachodzą w kwietniu tego samego roku (SST wyprzedza moment pomiaru TW200) i w grudniu tego samego roku (SST jest opóźnione względem TW200). W ujęciu sezonowym najsilniejsze związki TW200 zachodzą ze średnią SST z okresu styczeń-kwiecień (SST01-04). Z wartością TW200 z danego roku związki takie zachodzą dwukrotnie – w tym samym roku co pomiar TW200 i w roku następnym. Rozkład współczynników korelacji wartości TW200 z SST na obszarze północnej części Morza Norweskiego, zachodniej części Morza Barentsa i NE części Morza Grenlandzkiego wskazuje, że wartość TW200 stanowi jeden z najważniejszych wskaź-ników klimatycznych dla tej części Arktyki.
The work discusses the distribution in time and space of relationships taking place between the temperature of the Atlantic Water in the West Spitsbergen Current and sea surface temperature of waters in the vicinity of Spitsbergen. Temperature of the Atlantic water is measured by the Institute of Oceanology of Polish Academy of Sciences at a depth of ~200 m along the profile 76.5°N, 9-12°E and is the average of the measurements taken in July and August along the profile (marked TW200). The measurement series TW200 is short (1996-2011; 16 years). The aim of this study is to determine the extent to which the commonly used SST data sets describe the resources of warm water in the deeper layers of the sea area. It was found that the SST data sets very well characterized subsurface warm water resources of the Atlantic in the cold season of the year – the winter cooling of the ocean – from November to April-May. It is connected with the action of intensive convection. In the period of warm season (June to October) the relationship between TW200 and SST becomes weak due to the formation of a hydrostatically stable layer of warm water in the surface layer of the ocean. As a result the contact of surface waters with deeper layers of water ceases and changes in SST are influenced by changes in ocean surface heat balance, without much impact of heat resources from deeper ocean. The strongest monthly correlations between the TW200 and SST occur in April of the same year (SST precedes time of measurement TW200) and in December of the same year (SST is delayed relatively to TW200). The strongest seasonal correlations between TW200 and mean SST occur from the period of January-April (SSTJFMA). Such correlations between the value of TW200 and SST in a given year occur twice – in the same year when TW200 was measured and the following year. The distribution of coefficients of correlation between TW200 and SST in the northern part of the Norwegian Sea, the western part of the Barents Sea and NE part of the Greenland Sea indicates that the value of the TW200 is one of the most important climatic factors for this part of the Arctic.
Źródło:
Problemy Klimatologii Polarnej; 2012, 22; 43-56
1234-0715
Pojawia się w:
Problemy Klimatologii Polarnej
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Związki między temperaturą wody w energoaktywnej strefie Morza Bellingshausena a temperaturą powietrza na Stacji Arctowskiego
Correlations between the water temperature in energy-active zone of the Bellingshausen Sea and the air temperature at the Arctowski Station
Autorzy:
Styszyńska, A.
Powiązania:
https://bibliotekanauki.pl/articles/260963.pdf
Data publikacji:
1998
Wydawca:
Stowarzyszenie Klimatologów Polskich
Tematy:
temperatura wody
temperatura powietrza
Szetlandy Południowe
Stacja Arctowskiego
anomalia TPO
water temperature
air temperature
Arctowski Station
South Shetland
SST anomalies
Opis:
The main task of this paper is to explain if there is an energy-active sea zone in the vicinity of the South Shetland Islands and the Antarctic Peninsula which controls changes in atmospheric circulation in this area. The analysis made by use of the data comprising information about mean monthly sea surface temperatures (later SST) and SST anomalies in 2 x 2° grids - GEDEX and data about mean monthly air temperatures taken at the Arctowski Station (Meteorological Yearbooks of the Arctowski Station). Common data spanned the period from January 1982 to April 1992. The first stage of this work was to find so called .active grids", i.e. grids of bigger influence of ocean surface on thermic regime of distant areas. In order to do that an analysis of changes in SST in parts of the South Ocean comprising the Bellingshausen Sea, the Drake Strait, the Scotia Sea and the boundary between the Scotia Sea and the Weddell Sea was carried out. The analysis resulted in a conclusion that three grids situated 80oW: 56°,60° and 64°S show the larger relation with the flow of air temperature at the Arctowski Station. There are synchronic and asynchronic correlations between SST anomalies and the air temperature in nominated grids of the Arctowski Station. The results of analysis of synchronic correlations have been presented in table l. Asynchronic correlations are of complicated nature and distributions. Most numerous simple correlations were reported to occur between the temperature at the Arctowski Station and SST Anomalies in grids [80°W, 64°S]. The largest correlations are those with anomalies occurring in January, February and March. They can be observed in the air temperature with 11-13 months delay. The combined correlations are multiple correlations between regression equation of synchronically occurring anomalies (AN) in those grids and the air temperature at the Arctowski Station (ARC) in consecutive months (1, 2, 3, ..., n, n + 1, n + 2); ARC_n = a + b AN[80.56]_n + c AN[80.60]_n + d AN[80.64]_n. Table 2 contains set of multiple correlation coefficients and those which are likely to be significant have been marked. It has been stated that SST anomalies at 800W in March correlate with monthly air temperatures at the end of summer the following year (February and March) at the Arctowski Station and with temperatures of the early and midwinter of the following year (May, June, July).The variation in SST anomalies in March explains 88% - 69% of variance of variation in the air temperature in June and in July of the following year at the Arctowski Station (fig. l). The response of the air temperature to the occurrence of SST anomalies in October at 800W is much faster - from one to five months. Large correlation between the air temperatures at the Arctowski Station and SST anomalies can be observed already in December of the same year and in January, March and April in the following year (fig. 2). The above stated facts lead to conclusion that the distribution of SST does not influence the flow of the air temperature in a continuous way. Future variations in the air temperature are influenced by the states of thermal field of water measured at crucial moments (the end of summer and the end of winter). They are the states, which later on are slowly modified by processes of radiation in-and off flow, wind chilling and dynamic processes active in the ocean (heat advection following the mass advection). Thus a thesis can be stated that the SST anomalies occurring in grids 56°, 600 and 64°S. 800W may serve as predictive values to work out long term prognosis of the air temperature at the Arctowski Station. These prognosis can be divided into "early" prognosis with 2-6 months' advance (equations 1-4) and "distant" prognosis with 11-18 months' advance (equations 5-8). The above mentioned equations explain about 91% to 52% of variations in the mean monthly air temperature at the Arctowski Station. The presented facts indicate that there really is energy-active zone in the Bellingshausen Sea. Chapter 6 in 4 points shows how the hypothetical mechanism works. It can be understood and explained in a similar way as in case of the Labrador Sea and the New Foundland region (Marsz 1997). The analysis of synchronic statistical correlations between the air temperature at the Arctowski Station and the distribution of SST anomalies at 80°W indicates, among others, the presence of the mechanism described in Chapter 6. Such correlations have been analysed and discussed in a detailed way for April (fig. 3, equations 9 and l0) and for July (fig. 4, equation 11).
Źródło:
Problemy Klimatologii Polarnej; 1998, 8; 25-46
1234-0715
Pojawia się w:
Problemy Klimatologii Polarnej
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Validation of the hydrodynamic part of the ecohydrodynamic model for the Southern Baltic
Autorzy:
Jedrasik, J.
Powiązania:
https://bibliotekanauki.pl/articles/48134.pdf
Data publikacji:
2005
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
fluctuation
water temperature
hydrodynamic model
validation
sea level
ecohydrodynamic model
salinity
Baltic Sea
Opis:
The first part of the Baltic Sea ecohydrodynamic model, based on the Princeton Ocean Model (POM), was validated by long-term observations of sea level, salinity and water temperature fluctuations. The modelled sea surface temperature (SST) fields were also compared to satellite images – satisfactory correlation coefficients were obtained. The model bias and efficiency coefficients of the modelled variables in relation to the observed values were determined. The quality of model simulations in relation to measured values was estimated with respect to spatial and seasonal variability in shallow and deep coastal waters as well as in the open sea. The results indicated the high quality of simulations by the hydrodynamic model.
Źródło:
Oceanologia; 2005, 47, 4
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Characterizing surface and air temperature in the Baltic Sea coastal area using remote sensing techniques and GIS
Autorzy:
Chybicki, A.
Kulawiak, M.
Łubniewski, Z.
Powiązania:
https://bibliotekanauki.pl/articles/963420.pdf
Data publikacji:
2016
Wydawca:
Politechnika Gdańska. Wydział Inżynierii Mechanicznej i Okrętownictwa
Tematy:
remote sensing
coastal zone
AVHRR
GIS
surface temperature
air temperature
vegetation index
Opis:
Estimation of surface temperature using multispectral imagery retrieved from satellite sensors constitutes several problems in terms of accuracy, accessibility, quality and evaluation. In order to obtain accurate results, currently utilized methods rely on removing atmospheric fluctuations in separate spectral windows, applying atmospheric corrections or utilizing additional information related to atmosphere or surface characteristics like atmospheric water vapour content, surface effective emissivity correction or transmittance correction. Obtaining accurate results of estimation is particularly critical for regions with fairly non-uniform distribution of surface effective emissivity and surface characteristics such as coastal zone areas. The paper presents the relationship between retrieved land surface temperature, air temperature, sea surface temperature and vegetation indices (VI) calculated based on remote observations in the coastal zone area. An indirect comparison method between remotely estimated surface temperature and air temperature using LST/VI feature space characteristics in an operational Geographic Information System is also presented.
Źródło:
Polish Maritime Research; 2016, 1; 3-11
1233-2585
Pojawia się w:
Polish Maritime Research
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Zlodzenie Zatoki Admiralicji a temperatura wody w energoaktywnej strefie Morza Bellingshausena (1982-1997)
Sea ice condition in the Admiralty Bay and the water temperature in the energy-active region of the Bellingshausen Sea (1982-1997)
Autorzy:
Kruszewski, G.
Powiązania:
https://bibliotekanauki.pl/articles/260873.pdf
Data publikacji:
2001
Wydawca:
Stowarzyszenie Klimatologów Polskich
Tematy:
zjawiska lodowe
Morze Bellingshausena
Zatoka Admiralicji
pokrywa lodowa
zlodzenia
ice phenomena
Bellingshausen Sea
Admiralty Bay
ice cover
sea ice
Opis:
Correlations, especially those on a regional scale, between the sea ice cover formation and the air and sea surface temperatures have been pointed out by a number of authors. Region that is clearly marked by such correlation is located NW of the Antarctic Peninsula (among others Weatherly and others, King 1994, Styszyńska 1997, 2000). The intensity of ice formation in the relatively small Admiralty Bay noted in a given winter season indicates strong correlation with the winter sea ice cover extent in a regional scale (Kruszew-ski 1999, 2000). This ice cover is influenced (among others) by the sea surface temperature. The possible nature of the correlation between the sea surface temperature (SST) at the meridian of 080°W and the changes in air temperature in the region of the Southern Shetlands as described by Styszyńska suggested the presence of similar correlations with the intensity of ice formation in that region, so in this way also in the Admiralty Bay. With the help of Spearmann correlation coefficient a number of statistically significant relations have been found between the course of SST in the region of 086-062°W and the intensity of ice formation in the Admiralty Bay are presented in a categorised way. These relations are both synchronic and asynchronic. The synchronic correlation is observed mainly between SST in winter months and the ice cover category in the same year (the increase in SST is followed by the decrease in ice cover category).These correlations are most significant in the region 62-66°S (July - September). They also occur farther north 56-58°S but this time in the eastern part of the said region (March-July) and they are also observed in 60-64° (but in January and February). The asynchronic correlations have been observed between SST in October and ice cover category of the Admiralty Bay in the following year(8-11month slater). These correlations are most significantly marked in 56-64°S (the northern part of the Bellingshausen Sea and in the Circumpolar Current region) especially in 60°S 080°W (r = -0.677, p < 0.01) and their character is similar to those of the previously mentioned synchronic correlations.
Źródło:
Problemy Klimatologii Polarnej; 2001, 11; 105-112
1234-0715
Pojawia się w:
Problemy Klimatologii Polarnej
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Numerical modelling of an oil spill in the Northern Adriatic
Autorzy:
Loncar, G.
Leder, N.
Paladin, M.
Powiązania:
https://bibliotekanauki.pl/articles/48197.pdf
Data publikacji:
2012
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
oil spill
oil pollution
emulsification
numerical modelling
Northern Adriatic
sea surface
temperature
salinity
physical oceanography
Opis:
Hypothetical cases of oil spills, caused by ship failure in the northern Adriatic, are analysed with the aim of producing three-dimensional models of sea circulation and oil contaminant transport. Sea surface elevations, sea temperature and salinity fields are applied as a forcing argument on the model’s open boundaries. The Aladin-HR model with a spatial resolution of 8 km and a time interval of 3 hours is used for atmospheric forcing. River discharges along the coastline in question are introduced as point source terms and are assumed to have zero salinity at their respective locations. The results of the numerical modelling of physical oceanography parameters are validated by measurements carried out in the ‘Adriatic Sea monitoring programme’ in a series of current meter and CTD stations in the period from 1 January 2008 to 15 November 2008. The oil spill model uses the current field obtained from a circulation model. Besides the convective dispersive transport of oil pollution (Lagrangian model of discrete particles), the model takes into account a number of reactive processes such as emulsification, dissolution, evaporation and heat balance between the oil, sea and atmosphere. An actual event took place on 6 February 2008, when the ship ‘Und Adriyatik’ caught fire in the vicinity of the town of Rovinj (Croatia) en route from Istanbul (Turkey) to Trieste (Italy). At the time the fire broke out, the ship was carrying around 800 tons of oil. Thanks to the rapid intervention of the fire department, the fire was extinguished during the following 12 hours, preventing possible catastrophic environmental consequences. Based on this occurrence, five hypothetical scenarios of ship failure with a consequent spill of 800 tons of oil over 12 hours were analysed. The main distinction between the simulated scenarios is the time of the start of the oil spill, corresponding to the times when stronger winds were blowing (>7 m s−1) with a minimum duration of 24 h within the timeframe. Each scenario includes a simulation of oil transport for a period of two months after the beginning of the oil spill. The results show that the coastal belt between the towns of Poreˇc and Rovinj is seriously exposed to an oil pollution load, especially a few days after a strong and persistent bora (NE wind).
Źródło:
Oceanologia; 2012, 54, 2
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Winter upwelling in the Gulf of Finland, Baltic Sea
Autorzy:
Suursaar, U.
Powiązania:
https://bibliotekanauki.pl/articles/2078916.pdf
Data publikacji:
2021
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
upwelling
winter
nearshore region
Finland Gulf
Baltic Sea
stratification
vertical flux
water temperature
Opis:
Traditionally, upwelling-related studies in the Baltic Sea have been limited to the period from May to September. Based on wintertime in situ measurements at two nearshore locations in the Gulf of Finland, clear evidence of winter “warm” upwelling events was detected and analysed. The process was very common. At a 10 m deep location, upwelling caused water temperature (T) to switch from 0—1 to 4—5°C and salinity (S) to switch from 4.5 to 6 PSU; at 20 m depth it caused a switch in T between 1 and 2—4°C and in S between 5.5 and 6.8 PSU. Differently from summer upwelling, T and S variations were positively correlated to each other. Salinity variations remained roughly the same throughout the winter, whereas T differences were higher in winter onset, then decreased to ca. 1°C, and increased again after the process reversed to summer-type upwelling in April—May. Based on analysis of SatBaltyk (January to March) sea surface temperature and salinity product imagery, winter upwelling occurrence along the North Estonian coast was 21—28% over 2010—2021, and slightly less along the Finnish coast. Regarding S variations, winter upwelling occurred with roughly similar frequencies and impacts in the northern and southern parts of the gulf. However, the impacts on T and sea ice conditions were highly asymmetrical. Upwelling kept the Estonian coast ice-free longer and water temperatures slightly higher than at the Finnish coast. Winter upwelling as a phenomenon has long been ignored and therefore probably underestimated.
Źródło:
Oceanologia; 2021, 63, 3; 359-369
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Combined impact of summer heat waves and coastal upwelling in the Baltic Sea
Autorzy:
Suursaar, U.
Powiązania:
https://bibliotekanauki.pl/articles/2079092.pdf
Data publikacji:
2020
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
global warming
heat wave
coastal upwelling
water temperature
salinity
satellite image
Finland Gulf
Baltic Sea
Opis:
Under warming climates, heat waves (HWs) have occurred in increasing intensity in Europe. Also, public interest towards HWs has considerably increased over the last decades. The paper discusses the manifestations of the summer 2014 HW and simultaneously occurring coastal upwelling (CU) events in the Gulf of Finland. Caused by an anticyclonic weather pattern and persisting easterly winds, CUs evolved along the southern coast of the Gulf in four episodes from June to August. Based on data from coastal weather stations, 115 days-long measurements with a Recording Doppler Current Profiler (RDCP) oceanographic complex and sea surface temperature (SST) satellite images, the partly opposing impacts of these events are analysed. Occurring on the background of a marine HW (up to 26°C), the CU-forced SST variations reached about 20 degrees. At the 10 m deep RDCP mooring location, a drop from 21.5 to 2.9°C occurred within 60 hours. Salinity varied between 3.6 and 6.2 and an alongshore coastal jet was observed; the statistically preferred westerly current frequently flowed against the wind. Locally, the cooling effect of the CUs occasionally mitigated the overheating effects by the HWs both in the sea and on the marine-land boundary. However, in the elongated channel-like Gulf of Finland, upwelling at one coast is usually paired with downwelling at the opposite coast, and simultaneously or subsequently occurring HWs and CUs effectively contribute to heat transfer from the atmosphere to the water mass. Rising extremes of HWs and rapid variations by CUs may put the ecosystems under increasing stress.
Źródło:
Oceanologia; 2020, 62, 4PA; 511-524
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Heat and salt fluxes in the West Spitsbergen Current area in summer
Autorzy:
Piechura, J.
Osinski, R.
Petelski, T.
Wozniak, S.B.
Powiązania:
https://bibliotekanauki.pl/articles/49050.pdf
Data publikacji:
2002
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
Spitsbergen Current
temperature
radiation flux
energy flux
heat flux
sea surface
salt flux
ocean circulation
Opis:
Fluxes of radiation, sensible and latent heat, and fluxes of heat and salt within the upper layer of the ocean were calculated on the basis of measurements carried out in the area of the Norwegian-Atlantic and West Spitsbergen Currents during summer 2000. The sea surface radiation balance was calculated from direct measurements of downward and upward short-wave (solar) radiation, the net radiation fluxes and sea surface temperature. The daily doses of radiation energy reaching and leaving the sea surface were also estimated. To calculate the vertical heat fluxes in the atmospheric boundary layer the bulk parameterisation method was used. In most cases, the calculated heat fluxes were rather low, the average sensible heat flux was c. 10 Wm−2, and the latent heat flux about one order of magnitude higher; this is what could be expected in summer. Salt fluxes to the air in the process of aerosol production are very small and can be neglected. In summer the highest quantities of heat and salt are exchanged during mixing with surrounding waters. According to our measurements, Atlantic Water on its northward course from about 70◦N to 79◦ N loses about 100 TWof heat and 900 × 103 kg of salt. We thought it could be interesting to find out what happens to them. Some preliminary results of our investigation are presented here.
Źródło:
Oceanologia; 2002, 44, 3
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Historical occurrences of marine microalgal blooms in Indian Peninsula: Probable causes and implications
Autorzy:
Oyeku, O.G.
Mandal, S.K.
Powiązania:
https://bibliotekanauki.pl/articles/2079002.pdf
Data publikacji:
2021
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
marine environment
algal bloom
microalga
sea surface
water temperature
Indian Peninsula
Opis:
The Indian marine environment supports employment for over 200 million people, including revenue of nearly $7 billion per annum. However, ecological goods and services of the shallow coast and the marine environment of the Indian peninsula are being affected by recurrent blooms of microalgae. One hundred and six published literature, starting from the first report in 1908 to 2017, were reviewed to investigate the historical occurrences of marine microalgal blooms (MMBs) around the Indian peninsula. 154 MMBs comprising 24 genera and 7 classes were reported during the study period. Noctiluca (dinophyceae) and Trichodesmium (cyanophyceae) bloom contributed 34.4% and 31.8% of total blooms. PCA revealed that high sea surface temperature (SST) and salinity were significant driving forces for Trichodesmium blooms formation, while high nutrients (NO3-N, PO4-P, and SiO4-Si) and low salinity triggered prymnesiophyceae, raphidophyceae, bacillariophyceae and most of the dinophyceae blooms. Noctiluca blooms were linked with both eutrophication and the abundance of prey organisms. HABs were generally dinophyceae dominated and were associated with mass mortality of aquatic fauna, human intoxication, paralytic, and ciguatera shellfish poisoning and even death. Increasing SST and anthropogenic influences around the Indian peninsula could increase the occurrences of MMBs (including HABs) and the number of causative taxa. Proper safety measures such as routine monitoring of phycotoxin levels in the environment and local seafood are required to be put in place in other to protect the health of the public.
Źródło:
Oceanologia; 2021, 63, 1; 51-70
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Changes of the water temperature in Polish seaside resorts
Zmiany temperatury wody w polskich miejscowościach nadmorskich
Autorzy:
Swiatek, M.
Powiązania:
https://bibliotekanauki.pl/articles/84801.pdf
Data publikacji:
2016
Wydawca:
Akademia Pomorska w Słupsku
Tematy:
temperature change
sea water
water temperature
air temperature
Baltic coast
Polska
seaside resort
Opis:
Subject of the study are changes of the water temperature occurring on the Polish Baltic coast during years 1951-2010 (in Kołobrzeg, due to deficiencies in the data, for the years 1957-2010). It is expressed in the form of a linear trend. The study was based on the monthly average temperature of the sea water in the following stations: Świnoujście, Międzyzdroje, Kołobrzeg, Władysławowo, Hel and Gdynia. For most of analyzed stations an increase in average annual temperature of the water were observed. The largest one was recorded in Gdynia. In Świnoujście there were no significant changes in water temperature except for the slight its drop in June. A significant increase in the water temperature occurred in Międzyzdroje in February, March, April and May; in Kołobrzeg in January and March; in Władysławowo in January, February, March, April and June and in Hel and Gdynia in February, March, April, May, July and August. The greatest changes were in April in Hel and Gdynia.
Przedmiot badań stanowią zmiany temperatury wody zachodzące na polskim wybrzeżu Bałtyku w latach 1951-2010 (w Kołobrzegu ze względu na braki w danych w latach 1957-2010), wyrażone w formie trendu liniowego. W pracy wykorzystano średnie miesięczne wartości temperatury wody w następujących miejscowościach: Świnoujście, Międzyzdroje, Kołobrzeg, Władysławowo, Hel oraz Gdynia. W większości analizowanych stacji (oprócz Świnoujścia i Kołobrzegu) nastąpił wzrost średniej rocznej temperatury wody. Największy odnotowano w Gdyni, gdzie temperatura wody wzrastała średnio o około 0,02°C rocznie. Istotny statystycznie wzrost temperatury wody nastąpił w Międzyzdrojach w lutym, marcu, kwietniu i maju, w Kołobrzegu w styczniu i marcu, we Władysławowie w styczniu, lutym, marcu, kwietniu i w czerwcu, a w Helu i Gdyni w lutym, marcu, kwietniu, maju, lipcu i sierpniu. Największe zmiany następowały w kwietniu (w Helu i Gdyni powyżej 0,03°C rocznie). W Świnoujściu nie wystąpiły istotne zmiany temperatury wody z wyjątkiem niewielkiego jej spadku w czerwcu.
Źródło:
Baltic Coastal Zone. Journal of Ecology and Protection of the Coastline; 2016, 20
1643-0115
Pojawia się w:
Baltic Coastal Zone. Journal of Ecology and Protection of the Coastline
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Climate and growth of Podocarpus salignus in Valdivia, Chile
Autorzy:
Rozas, V.
Le Quesne, C.
Munoz, A.
Puchi, P.
Powiązania:
https://bibliotekanauki.pl/articles/41770.pdf
Data publikacji:
2016
Wydawca:
Polska Akademia Nauk. Instytut Dendrologii PAN
Tematy:
dendrochronology
precipitation
sea level pressure
climate
plant growth
temperature
Podocarpus salignus
Valdivia city
Chile
Opis:
Little dendroclimatic research has been conducted on species of Podocarpus, in response to inherent difficulties associated with tree-ring differentiation and cross-dating. We sampled complete stem cross sections from a plantation of Podocarpus salignus trees in Valdivia, Chile, near the southern edge of the species’ range. We measured earlywood, latewood, and total ring widths avoiding ring wedging, and we calculated the corresponding chronologies. The relationship of these chronologies with maximum temperature, precipitation, and sea level pressure was addressed using correlation and redundancy analyses. All chronologies showed a similar response to climate that was consistent with the cloudy, rainy, and temperate conditions of the study area. That is, warm and dry conditions during previous late springs were beneficial, while warm and rainy winters under low atmospheric pressures were detrimental for growth. The observed climatic responses are in contrast to those of conifers from mountainous areas of southern South America. Limitation of carbohydrates available for growth in the following active season was a possible cause for the observed responses to climate. That is, high winter temperatures may deplete stored carbohydrates by increasing respiration, and a high degree of cloud cover reduces the radiation received by the trees in the active season, which may hamper photosynthesis. Our work highlights the dendroclimatological value of Podocarpus salignus to investigate the influence of climatic variation on tree growth and forest productivity.
Źródło:
Dendrobiology; 2016, 76
1641-1307
Pojawia się w:
Dendrobiology
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Relationships between water temperature, nutrients and dissolved oxygen in the Northern Gulf of Aqaba, Red Sea
Autorzy:
Manasrah, R.
Raheed, M.
Badran, M.I.
Powiązania:
https://bibliotekanauki.pl/articles/49092.pdf
Data publikacji:
2006
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
stratification
nutrient
Aqaba Gulf
temperature
sea water
Red Sea
oxygen
Opis:
Five years (1998, 2000–2003) of summer records of temperature, nutrients and dissolved oxygen concentrations in the upper 400 m of the water column of the northern Gulf of Aqaba were employed to produce a simple statistical model of the relationship between temperature versus nitrate, phosphate, silicate andd issolved oxygen concentrations. Temperature profiles in the upper 400 m during summer revealeda clear thermocline in the upper 200 m. This was reflected in nutrient ando xygen concentrations as nitrate, phosphate, and silicate increasedfr om the surface to deep water while dissolved oxygen decreased. The best fit relationship between temperature versus nitrate andphosphate was inverse linear and the best fit correlation between temperature versus silicate andd issolvedo xygen was fractional. The observedn utrient concentrations were shaped by a combination of the hydrodynamics and biological factors. Deep winter mixing and high nutrient concentrations dominate during winter. Shortly after the water stratifies in spring, the nutrients are drawn down by phytoplankton during the spring bloom and remain low throughout the rest of the year. The regression equations presented here will be useful in estimating nutrient concentrations from temperature records as long as the annual natural cycle is the main driver of nutrient concentrations and external inputs are insignificant. Deviations from these relationships in the future could provide insight into modifications in the nutrient concentrations probably resulting from new nutrient sources, such as anthropogenic inputs.
Źródło:
Oceanologia; 2006, 48, 2
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Effects of atmospheric circulation on water temperature along the Southern Baltic Sea coast
Autorzy:
Girjatowicz, J.P.
Swiatek, M.
Powiązania:
https://bibliotekanauki.pl/articles/48210.pdf
Data publikacji:
2019
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
atmospheric circulation
water temperature
surface temperature
thermal property
air mass
correlation
Baltic Sea
coastal zone
Źródło:
Oceanologia; 2019, 61, 1
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Pronounced anomalies of air, water, ice conditions in the Barents and Kara Seas, and the Sea of Azov
Autorzy:
Matishov, G.G.
Dzhenyuk, S.L.
Moiseev, D.V.
Zhichkin, A.P.
Powiązania:
https://bibliotekanauki.pl/articles/49104.pdf
Data publikacji:
2014
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
climate
water temperature
anomaly
air temperature
sea ice
Barents Sea
Kara Sea
Azov Sea
hydrographic condition
winter condition
Źródło:
Oceanologia; 2014, 56, 3
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Comparison of measured and modelled water temperature for the southern Baltic Sea during 1998-2001
Autorzy:
Piliczewski, B.
Powiązania:
https://bibliotekanauki.pl/articles/972881.pdf
Data publikacji:
2001
Wydawca:
Instytut Morski w Gdańsku
Tematy:
HIROMB
water temperature
Opis:
The article presents results of verification of water temperature forecasts from HIROMB model, which were compared with every-day measurements from some selected JMGW coastal hydrological stations during 1998-2001. In addition to that the model results were also confronted with CTD measurements from the Gdańsk Deep.
Źródło:
Biuletyn Instytutu Morskiego w Gdańsku; 2001, 28, 2; 89-95
1230-7424
2450-5536
Pojawia się w:
Biuletyn Instytutu Morskiego w Gdańsku
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Comparison of measured and modelled water temperature for the southern Baltic Sea during 1998-2001
Autorzy:
Piliczewski, B.
Powiązania:
https://bibliotekanauki.pl/articles/1920638.pdf
Data publikacji:
2001
Wydawca:
Instytut Morski w Gdańsku
Tematy:
HIROMB
water temperature
Opis:
The article presents results of verification of water temperature forecasts from HIROMB model, which were compared with every-day measurements from some selected JMGW coastal hydrological stations during 1998-2001. In addition to that the model results were also confronted with CTD measurements from the Gdańsk Deep.
Źródło:
Biuletyn Instytutu Morskiego w Gdańsku; 2001, 28, 2; 89-95
1230-7424
2450-5536
Pojawia się w:
Biuletyn Instytutu Morskiego w Gdańsku
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Temperature and salinity of surface water at a coastal measuring point, Isbjörnhamna, Spitsbergen
Autorzy:
Swerpel, Sławomir
Powiązania:
https://bibliotekanauki.pl/articles/2053282.pdf
Data publikacji:
1987
Wydawca:
Polska Akademia Nauk. Czytelnia Czasopism PAN
Tematy:
Arctic
Spitsbergen
sea water
temperature and salinity
Źródło:
Polish Polar Research; 1987, 8, 1; 57-64
0138-0338
2081-8262
Pojawia się w:
Polish Polar Research
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Is practical salinity conservative in the Baltic Sea?
Autorzy:
Feistel, R.
Weinreben, S.
Powiązania:
https://bibliotekanauki.pl/articles/48152.pdf
Data publikacji:
2008
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
Standard Seawater
chemical composition
oceanographic measurement
Baltic water
temperature
Baltic Sea
practical salinity scale
salinity
calcium ion
sea water
Opis:
The conductivity-salinity conversion algorithm used for oceanographic measurements of Practical Salinity on the PSS-78 scale is designed for IAPSO Standard Seawater. The application of this formula to a given sample of non-standard seawater does not necessarily result in a constant salinity value when the sample’s conductivity is measured at different temperatures.We have experimentally studied the magnitude of this non-conservative effect of Practical Salinity using a sample of Baltic seawater possessing a density anomaly of about 50 g m−3. The apparent change of salinity observed is at the limit of experimental uncertainty and is not significantly different from the drift of Standard Seawater, which was measured for comparison.
Źródło:
Oceanologia; 2008, 50, 1; 73-82
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Variability of temperature and salinity over the last decade in selected regions of the Southern Baltic Sea
Autorzy:
Rak, D.
Wieczorek, P.
Powiązania:
https://bibliotekanauki.pl/articles/48785.pdf
Data publikacji:
2012
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
temperature
salinity
Southern Baltic Sea
trend
seasonal variability
physical property
water column
water exchange
water circulation
Opis:
Changes in the basic physical properties of selected areas of the Baltic Proper were analysed on the basis of the results of a 12-year series of high-resolution measurements collected during cruises of r/v ‘Oceania’. The high-resolution CTD sections covered three main basins: the Bornholm Basin, Słupsk Furrow and Gdańsk Basin. Positive temperature trends of 0.11 and 0.16◦C year−1 were observed in the surface and deep layers respectively. The salinity trend was also positive. The rise in the air temperature has probably caused the increase in surface water temperature, while advection has been of greater significance in the deep layer. The increase in salinity coincides with the more frequent occurrence of small and medium-size inflows through the Danish Straits, even though large inflows are evidently less frequent than used to be the case. The seasonal variability of temperature in the water column was analysed. The phase shift in the seasonal evolution with depth is described. The maximum temperature shift in the waters investigated varies from 32 to 38 days.
Źródło:
Oceanologia; 2012, 54, 3
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
A model-measurements comparison of atmospheric forcing and surface fluxes of the Baltic Sea
Autorzy:
Rudolph, C.
Lehmann, A.
Powiązania:
https://bibliotekanauki.pl/articles/48268.pdf
Data publikacji:
2006
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
coupled sea-ice-ocean model
surface flux
temperature
pressure
radiation flux
heat flux
air-sea interaction
Baltic Sea
wave radiation
Opis:
Observed basic meteorological quantities, heat and radiation fluxes from three different measurement stations in the Baltic Sea are compared with model data of the coupled sea-ice-ocean model BSIOM in order to evaluate the atmospheric forcing, corresponding surface fluxes and the sea surface response. Observational data weremade available from the BASIS winter campaigns in 1998 and 2001 as well as from the r/v ‘Alkor’ cruise in June 2001. Simulated fluxes were calculated from prescribed atmospheric forcing provided from the SMHI meteorological database and modelled sea surface temperatures. The comparison of these fluxes with observations demonstrates a strong correlation, even though mean differences in sensible heat fluxes range from 4 to 12 W m−2 in winter and −25 W m−2 in the June experiment. Differences in latent heat fluxes range from −10 to 23 W m−2. The short-wave radiation flux used as model forcing is on average 15 W m−2 less than the corresponding observations for the winter experiments and 40 W m−2 for the June experiment. Differences in net long-wave radiation fluxes range from −5 to 12W m−2 in winter and −62W m−2 for the June experiment. The correspondence between measured and calculated momentum fluxes is very high, which confirms the usability of our model component for calculating surface winds and wind stresses from the atmospheric surface pressure.
Źródło:
Oceanologia; 2006, 48, 3
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
New coupled atmosphere-ocean-ice system COSMO-CLM/NEMO: assessing air temperature sensitivity over the North and Baltic Seas
Autorzy:
Van Pham, T.
Brauch, J.
Dieterich, C.
Frueh, B.
Ahrens, B.
Powiązania:
https://bibliotekanauki.pl/articles/48930.pdf
Data publikacji:
2014
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
coupled atmosphere-ocean-ice system
temperature sensitivity
air temperature
Baltic Sea
North Sea
regional climate modelling
COSMO-CLM model
Źródło:
Oceanologia; 2014, 56, 2
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Dependence between temperature and clearance rate of Balanion comatum Wulff
Autorzy:
Rychert, K.
Powiązania:
https://bibliotekanauki.pl/articles/47880.pdf
Data publikacji:
2011
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
Balanion comatum
Baltic Sea
ciliate
clearance
climate
coastal zone
grazing
marine ciliate
temperature
Opis:
The dependence between temperature and clearance rate of the ciliate Balanion comatum Wulff 1919 was assessed in the coastal zone of the southern Baltic Sea. Five in situ experiments were carried out with the use of wheat starch as a surrogate of food particles. The clearance rate rose from 1.4 to 7.0 μl cell−1 h−1 with a temperature rise from 8 to 19◦C. B. comatum preferred particles of size 1.9–4.4 μm, and the clearance rates calculated for the preferred particles were consistently higher than those measured for the whole range of particles ingested (Wilcoxon’s signed rank test, p = 0.04). The exponential dependence between temperature and clearance rates for preferred particles was statistically significant (R2 = 0.86, p = 0.02) and enabled the Q10 coefficient to be calculated. This amounted to 2.9 and lay within the range of typical values. The linear dependence (also drawn for preferred particles) demonstrated a higher significance (R2 = 0.91, p = 0.02), indicating the linear dynamics of the process.
Źródło:
Oceanologia; 2011, 53, 2
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
The effects of temperature on the behaviour of the Antarctic sea star Odontaster validus
Autorzy:
Janecki, Tomasz
Kidawa, Anna
Potocka, Marta
Powiązania:
https://bibliotekanauki.pl/articles/2051603.pdf
Data publikacji:
2010
Wydawca:
Polska Akademia Nauk. Czytelnia Czasopism PAN
Tematy:
Antarctica
asteroid
temperature
stress
behaviour
Źródło:
Polish Polar Research; 2010, 3; 273-284
0138-0338
2081-8262
Pojawia się w:
Polish Polar Research
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Effect of temperature on two reef-building corals Pocillopora damicornis and P. verrucosa in the Red Sea
Autorzy:
Al-Sofyani, A.A.
Floos, Y.A.M.
Powiązania:
https://bibliotekanauki.pl/articles/47657.pdf
Data publikacji:
2013
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
coral
bleaching
temperature
global warming
reef-building coral
Pocillopora damicornis
Pocillopora verrucosa
Red Sea
zooxanthellae
Źródło:
Oceanologia; 2013, 55, 4
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
A more accurate formula for calculating the net longwave radiation flux in the Baltic Sea
Autorzy:
Zapadka, T.
Wozniak, B.
Dera, J.
Powiązania:
https://bibliotekanauki.pl/articles/47558.pdf
Data publikacji:
2007
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
temperature
cloud
radiation flux
water vapour
atmosphere
long-wave radiation
sea surface
Baltic Sea
Źródło:
Oceanologia; 2007, 49, 4
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Inflow waters in the deep regions of the Southern Baltic Sea - transport and transformations
Autorzy:
Piechura, J.
Beszczynska-Moller, A.
Powiązania:
https://bibliotekanauki.pl/articles/47562.pdf
Data publikacji:
2004
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
transport
temperature
deep region
transformation
Baltic Sea
inflow water
mixing
Opis:
A medium-sized inflow (about 200 km3 according to IOW data, - personal communication) of saline water into the southern Baltic Sea occurred during January 2003. Unlike any previously observed inflow, this one brought very cold water, of temperatures around 1-2oC and less. Since the temperature of the deep water in the southern Baltic before the inflow was exceptionally high (11-12oC), the inflowing waters produced dramatic changes and a steep temperature gradient. The movement of the inflowing waters through the deep basins and channels of the Baltic Sea from the Arkona Basin to the Gdańsk Deep during next 4-8 months is described. Frequent mesoscale structures and intensive mixing followed the eastward transport of the inflow water, particularly in the Bornholm Deep and Słupsk Furrow. The present paper is based on data collected during 6 cruises r/v "Oceania" between December 2002 and August 2003. The last cruise in August took place in order to assess the long-term consequences of the inflow.
Źródło:
Oceanologia; 2004, 46, 1
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Role of macrophytes in structuring littoral habitats in the Vistula Lagoon (Southern Baltic Sea)
Autorzy:
Pawlikowski, K.
Kornijow, R.
Powiązania:
https://bibliotekanauki.pl/articles/48542.pdf
Data publikacji:
2019
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
macrophyte
littoral habitat
oxygenation
temperature
insulation
sediment
Vistula Lagoon
Baltic Sea
Źródło:
Oceanologia; 2019, 61, 1
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
The air temperature variations in Szczecin and its dependence on the North Atlantic oscillation (NAO)
Tendencje zmian temperatury powietrza w Szczecinie i ich zależność od oscylacji północnoatlantyckiej (NAO)
Autorzy:
Kirschenstein, M.
Powiązania:
https://bibliotekanauki.pl/articles/85113.pdf
Data publikacji:
2011
Wydawca:
Akademia Pomorska w Słupsku
Tematy:
air temperature
temperature variation
Szczecin city
temperature dependence
North Atlantic oscillation
change trend
season
meteorological condition
weather condition
annual temperature
monthly temperature
Baltic Sea
autumn
winter
Opis:
The basic features of annual course of air temperature (differentiated between the particular months and seasons) along with air temperature variations during the period between 1950 and 2009 together with the trends of changes are presented. In addition the dependence of air temperature on North Atlantic Oscillation (NAO) is exhibited.
Celem pracy była analiza zmienności warunków termicznych w Szczecinie z uwzględnieniem tempa zmian określonego za pomocą współczynnika trendu liniowego oraz zbadanie zależności temperatury powietrza od Oscylacji Północnoatlantyckiej. Na podstawie przeprowadzonych badań stwierdzono, że przebiegi roczne temperatury powietrza w Szczecinie charakteryzowały się dużą zmiennością. Wynika ona ze zmiennego oddziaływania cyrkulacji znad Oceanu Atlantyckiego, wpływu Morza Bałtyckiego i oddziaływania obszaru kontynentalnego oraz uwarunkowań lokalnych. W wyniku przeprowadzonych badań uzyskano następujące wnioski: 1) W badanym okresie średnia roczna temperatura powietrza z wieloletnia wyniosła 8,2oC i w poszczególnych latach ulegała dużym wahaniom. Na początku badanego przedziału czasowego (1950-1969) średnia roczna temperatura obliczona dla okresu pięcioletniego była na poziomie średniej wieloletniej. W okresie tym bardzo ciepła była jesień. Następnie, w latach 1969-1988 (20 lat) wystąpiło bardzo wyraźne ochłodzenie (średnia roczna temperatura była niższa od średniej wieloletniej). W latach 1989-1996 średnia roczna temperatura ponownie stopniowo wzrastała i w latach 2007-2008 przekroczyła 10oC. Ten ciepły okres był konsekwencją wzrostu temperatury prawie we wszystkich miesiącach, szczególnie ciepłe w tym czasie były miesiące zimowe. 2) Najcieplejszym miesiącem był lipiec, jednak średnie maksimum występowało również często w sierpniu i czerwcu. Najchłodniejszym miesiącem był styczeń, minimum często pojawiało się również w lutym i w grudniu. Wielokrotne występowanie maksimum w sierpniu i minimum w lutym świadczy o częstym przesunięciu o jeden miesiąc. Jest to cecha typowa dla obszarów położonych w niewielkiej odległości od wybrzeża Bałtyku. 3) Analiza temperatury powietrza w porach roku wykazała, że lato było chłodne, tylko w ośmiu latach średnia temperatura przekroczyła 18oC, natomiast często występowały ciepłe zimy (łącznie w 55% lat średnie temperatury zimą były dodatnie), szczególnie w latach 1988-2008. Bardzo ciepła była jesień – w 100% lat temperatura była wyższa niż wiosną. 4) Analiza współczynników trendu liniowego wykazała, że miesiącem o najwyższym przyroście temperatury był luty, porami roku – wiosna i zima. Miesiącem o najniższym przyroście temperatury był czerwiec, porą roku – jesień. W badanym 60-leciu przyrost średniej rocznej temperatury powietrza wynosi około 1,2oC. 5) Z analizy związków między zmianami indeksu NAO a temperaturą powietrza wynika, że w Szczecinie występuje duża zależność temperatury powietrza od Oscylacji Północnoatlantyckiej w miesiącach zimowych (XII-II) oraz w marcu, świadczą o tym duże wartości współczynnika korelacji. Pozytywnej fazie NAO odpowiada na ogół wzrost średniej miesięcznej temperatury, negatywnej fazie NAO – spadek średniej miesięcznej temperatury. W przypadku obu faz zgodność wynosi odpowiednio: w styczniu – 67,8%, lutym – 73,3%, marcu – 75,0% i w grudniu – 67,8%. Zaobserwowano także, że występuje bardzo duża zgodność faz ujemnych w styczniu (85,7%) i w lutym (83,3%) oraz dodatnich w marcu (94,9%) i w grudniu (86,2%).
Źródło:
Baltic Coastal Zone. Journal of Ecology and Protection of the Coastline; 2011, 15
1643-0115
Pojawia się w:
Baltic Coastal Zone. Journal of Ecology and Protection of the Coastline
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Longwave radiation budget at the Baltic Sea surface from satellite and atmospheric model data
Autorzy:
Zapadka, T.
Krezel, A.
Wozniak, B.
Powiązania:
https://bibliotekanauki.pl/articles/47597.pdf
Data publikacji:
2008
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
air temperature
sea surface
heat budget
Baltic Sea
temporal analysis
spatial analysis
long-wave radiation
cloud cover
model data
Opis:
The net longwave radiation flux LW↑↓ in the Baltic Sea in 2001 has been subjected to spatial and temporal analysis. Maps of the mean monthly LW↑↓ over the Baltic were drawn using the new semi-empirical formula for the Baltic Sea (Zapadka et al. 2007). The input data for the formula, such as sea surface and air temperatures, and cloud cover, were obtained from the Tiros N/NOAA and METEOSAT 7 satellites and from the UMPLfo recast model (see http://meteo.icm.edu.pl). The mean annual LW↑↓ for 2001 was estimated at 63 W m−2 and compared with available data from other sources. The monthly maps of the net flux LW↑↓ over the Baltic show that the total values reach a minimum (LW↑↓≈50 W m−2) in April, September, October and a maximum (LW↑↓≈80 W m−2) in November. The statistical error of daily maps, on which the monthly maps were based, is no more than 18 W m−2.
Źródło:
Oceanologia; 2008, 50, 2; 147-166
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Sea salt in aerosols over the Southern Baltic. Part 2. The neutralizing properties of sea salt and ammonia
Autorzy:
Lewandowska, A.U.
Falkowska, L.M.
Powiązania:
https://bibliotekanauki.pl/articles/48352.pdf
Data publikacji:
2013
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
sea salt
marine aerosol
Baltic Sea
neutralization
coastal zone
ammonia
nitrogen compound
sulphur compound
ammonium ion
acidity
air humidity
chemical analysis
meteorological parameter
air temperature
Źródło:
Oceanologia; 2013, 55, 2
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Influence of landfast ice on the hydrography and circulation of the Baltic Sea coastal zone
Autorzy:
Merkouriadi, I.
Lepparanta, M.
Powiązania:
https://bibliotekanauki.pl/articles/49047.pdf
Data publikacji:
2013
Wydawca:
Polska Akademia Nauk. Instytut Oceanologii PAN
Tematy:
Finland Gulf
hydrography
landfast ice
circulation
Baltic Sea
coastal zone
water temperature
salinity
current
Źródło:
Oceanologia; 2013, 55, 1
0078-3234
Pojawia się w:
Oceanologia
Dostawca treści:
Biblioteka Nauki
Artykuł

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