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Wyszukujesz frazę "lean mixture" wg kryterium: Temat


Wyświetlanie 1-7 z 7
Tytuł:
Energy analysis of a small capacity SI engine fueled with lean air gas mixture
Autorzy:
Przybyła, G.
Postrzednik, S.
Żmudka, Z.
Powiązania:
https://bibliotekanauki.pl/articles/246676.pdf
Data publikacji:
2012
Wydawca:
Instytut Techniczny Wojsk Lotniczych
Tematy:
global warming
spark ignition (SI) engine
natural gas
indicated efficiency
lean mixture
Opis:
In this paper, the results of the theoretical study of an internal combustion engine, fuelled with lean air - gas mixtures, are presented. Energetic property calculations were done for several chosen gaseous fuels such as methane, landfill gas, and producer gas. Based on these fuels, the performance of a theoretical Seiliger-Sabathe cycle was investigated using variable air excess values. The accurate analysis of the various processes taking place in an internal combustion engine is a very complex problem. If these processes were to be analyzed experimentally, it would be more expensive than theoretical analysis. The Seiliger-Sabathe cycle turns out to be help in theoretical analysis of internal combustion engine performance. Dimensionless descriptive parameters (E, psi) are very useful at this analysis by combining the properties of fuel with initial thermodynamic parameters of the cycle. Moreover, the experimental results of SI engine fuelled with a lean mixture of natural gas are presented for comparative purposes. The experiments were carried out on a petroleum engine with a low engine displacement. A typical SI engine was selected in order to evaluate the potential application of a gaseous fuel (i.e. natural gas). These types of engines are widely available and commonly used in the automotive sector because of low purchase prices and operating costs. It is expected that after minor modifications, the engine can easily operate in a low power co-generation mode. The main objective is to evaluate the performance of the engine under lean air/fuel mixture conditions. The slight impact of air excess ratio on COVIMEP was noticed. The value decreases insensibly with air excess ratio decreasing. Obtained results are located at acceptable levels for power generation sources and are less than 5 %. Although, the more distinct impact was observed regarding to COVpmax. The maximum value was noted for leaner mixture and it amounts to approximately 7.5%.
Źródło:
Journal of KONES; 2012, 19, 2; 423-432
1231-4005
2354-0133
Pojawia się w:
Journal of KONES
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Impact of leaning hydrogen-air mixtures on engine combustion knock
Autorzy:
Szwaja, S.
Naber, J. D
Powiązania:
https://bibliotekanauki.pl/articles/243860.pdf
Data publikacji:
2008
Wydawca:
Instytut Techniczny Wojsk Lotniczych
Tematy:
IC engine
lean hydrogen-air mixture
combustion knock
Opis:
Combustion of lean hydrogen-air mixtures in an internal combustion (IC) spark ignited (SI) engine in respect of combustion knock effect is presented in this paper. It is known that making the combustible mixture leaner leads to both decreasing in-cylinder peak temperature of combustion and lengthening ignition lag. It also increases combustion duration. Having these issues on mind it could be concluded that combustion knock intensity decreases as well. It is reported that such a hypothesis is also correct when hydrogen based fuels are combusted in the IC engine, although hydrogen as an engine fuel, on the contrary to gasoline, is very susceptible to knock generation throughout the entire combustion duration. At the beginning the paper examines the combustion knock intensity on the basis of in-cylinder pressure traces. Next, a test-bed and obtained experimental results of hydrogen combustion in the IC single cylinder CFR engine are showed. Finally, analysis of knock intensity referring to lean hydrogen-air mixture ratio, expressed by the excess air number so-called lambda, is carried out. Significant conclusion from the analysis is that there is strong negative correlation between the hydrogen knock intensity and the excess air number lambda. In the end, comparison with exhaust gas recirculation as alternative way to reduce combustion knock, and constraints for leaning the hydrogen-air combustible mixture for the IC engine are discussed in the paper.
Źródło:
Journal of KONES; 2008, 15, 2; 483-491
1231-4005
2354-0133
Pojawia się w:
Journal of KONES
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Modelling of the thermal cycle of SI engine fuelled by liquid and gaseous fuel
Modelowanie obiegu cieplnego silnika ZI zasilanego paliwem cieklym i gazowym
Autorzy:
Kociszewski, A.
Powiązania:
https://bibliotekanauki.pl/articles/792772.pdf
Data publikacji:
2011
Wydawca:
Komisja Motoryzacji i Energetyki Rolnictwa
Tematy:
combustion engine
exhaust emission
modelling
thermal cycle
engine fuel
gaseous fuel
liquid fuel
lean mixture
numerical analysis
Opis:
Results of numerical analysis of methane and gasoline combustion in SI engine are presented in the paper. Work parameters of engine fuelled by gasoline and methane lean mixtures (excess air factor equals λ = 1.8) are compared.
W artykule przedstawiono wyniki analizy numerycznej procesu spalania metanu oraz benzyny w silniku ZI. Porównano parametry pracy modelu silnika zasilanego ubogimi mieszankami benzyny i metanu, przy współczynniku nadmiaru powietrza λ = 1.8.
Źródło:
Teka Komisji Motoryzacji i Energetyki Rolnictwa; 2011, 11C
1641-7739
Pojawia się w:
Teka Komisji Motoryzacji i Energetyki Rolnictwa
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Optimization of work parameters of gaseous SI engine
Optymalizacja parametrów pracy silnika gazowego ZI
Autorzy:
Kociszewski, A.
Powiązania:
https://bibliotekanauki.pl/articles/793332.pdf
Data publikacji:
2013
Wydawca:
Komisja Motoryzacji i Energetyki Rolnictwa
Tematy:
spark ignition engine
methane
gaseous fuel
numerical modelling
lean mixture
work parameter
nitric oxide
combustion process
3D modelling
Źródło:
Teka Komisji Motoryzacji i Energetyki Rolnictwa; 2013, 13, 2
1641-7739
Pojawia się w:
Teka Komisji Motoryzacji i Energetyki Rolnictwa
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Relative Change in SI Engine Performance Using Hydrogen and Alcohol as Fuel Supplements to Gasoline
Autorzy:
Yamin, Jehad A.A.
Sheet, Eiman Ali Eh
Rida, Khalid S.
Powiązania:
https://bibliotekanauki.pl/articles/2024183.pdf
Data publikacji:
2021
Wydawca:
Stowarzyszenie Inżynierów i Techników Mechaników Polskich
Tematy:
hydrogen
fuel blend
ethanol
engine availability
engine performance
emissions
lean mixture
entropy
wodór
mieszanka paliwowa
etanol
dostępność silnika
osiągi silnika
emisja
mieszanka uboga
entropia
Opis:
A simulation study on the effect of hydrogen and ethanol addition as supplementary fuel for gasoline engine at lean mixture (equivalence ratio ϕ = 0.8) was carried out to reduce the gasoline share in the mixture, thus reducing the fuel consumption and harmful emissions. The effect of supplementary fuels on engine performance, emissions, and availability was investigated. This was done by changing the ratio between gasoline and the supplementary fuels in the fuel mixture to achieve the required equivalence ratio. The first part of the simulation consisting of the performance and emissions calculated using the first law, was conducted for all engine speeds. The second part consisting of an availability analysis was conducted at the rated speed of 2750 rpm. The simulation study was conducted using the data obtained from measurements of Ricardo E6/T engine parameters (variable compression ratio engine). The data was also used to verify the models. The study shows that the hydrogen addition reduced the carbon monoxide (CO) and nitrogen oxides (NO2) share at the lean mixture. The hydrogen addition significantly improved the heat release rate compared with pure gasoline; however, the heat released was close to the top dead center due to its fast burning speed. The ethanol addition improved the first law performance of the engine, e.g., power and efficiency; however, at the cost of increased heat loss. It also improved the indicated work availability in comparison with the addition of hydrogen.
Źródło:
Advances in Science and Technology. Research Journal; 2021, 15, 1; 144-145
2299-8624
Pojawia się w:
Advances in Science and Technology. Research Journal
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Analiza procesu spalania ubogich mieszanek paliw gazowych w silniku ZI
The combustion process analysis of SI engine fuelled with lean air-gas mixture
Autorzy:
Przybyła, G.
Postrzednik, S.
Żmudka, Z.
Powiązania:
https://bibliotekanauki.pl/articles/133779.pdf
Data publikacji:
2013
Wydawca:
Polskie Towarzystwo Naukowe Silników Spalinowych
Tematy:
silnik spalinowy ZI
gaz ziemny
gaz ze zgazowania biomasy
sprawność wewnętrzna
mieszanka uboga
spark ignition engine
SI engine
natural gas
producer gas
indicated efficiency
lean mixture
Opis:
W artykule przedstawiono wyniki badań teoretycznych i eksperymentalnych silnika spalinowego o zapłonie iskrowym, zasilanego ubogimi mieszankami gazu z powietrzem. Przeprowadzono obliczenia wartości opałowej mieszanki gazowo-powietrznej (ed,v) dla wybranych paliw gazowych (gaz ziemny, biogaz, gaz z procesów zgazowania paliw stałych). Na podstawie własności tych paliw, określona została sprawność teoretycznego obiegu Otto, stosując zmienne wartości nadmiaru powietrza. Badania przeprowadzono na silniku o niskiej objętości skokowej. Tego typu silniki są stosowane w przemyśle motoryzacyjnym, a ze względu na niską cenę zakupu oraz koszty eksploatacji mogą być stosowane w układach kogeneracyjnych małej mocy. Głównym celem niniejszej pracy jest określenie parametrów silnika spalinowego ZI podczas spalania mieszanek ubogich. Jak wykazała analiza, największa różnica w wartościach (ed,v) energii chemicznej mieszanki palnej dla analizowanych paliw występuje w zakresie mieszanek stechiometrycznych. W tym miejscu różnica Δ ed,v pomiędzy gazem ziemnym, a przykładowym gazem ze zgazowania biomasy wynosi ok. 35%, podczas gdy w zakresie mieszanek ubogich różnica ta jest znacznie niższa. Dla bardzo wysokich wartości stosunku nadmiaru powietrza λ wspomniana różnica osiąga wartość „0”. Zaobserwowano wyraźny wpływ stosunku nadmiaru powietrza na nierównomierność pracy silnika bazującego na średnim ciśnieniu indykownym (COVIMEP). Wartości tego wskaźnika rosną ze wzrostem stosunku nadmiaru powietrza. Uzyskane wyniki kształtują się na dopuszczalnym poziomie ze względu na zastosowanie silnika w układzie CHP i osiągają wartość poniżej 5%.
In this paper the results of the theoretical and experimental study of an internal combustion engine, fuelled with lean air – gas mixtures, are presented. Calorific value of air-fuel mixture were calculated for several chosen gaseous fuels such as: natural gas, landfill gas, and producer gas. Based on these fuels, the performance of a theoretical Otto cycle was investigated using variable air excess values. The experiments were carried out on a petroleum engine with a low engine displacement. A typical SI engine was selected in order to evaluate the potential application of a gaseous fuel (i.e. natural gas). These types of engines are widely available and commonly used in the automotive sector because of low purchase prices and operating costs. It is expected that after minor modifications, the engine can easily operate in a low power co-generation mode. The main objective is to evaluate the performance of the engine under lean air/fuel mixture conditions. The analysis shows that the most significant difference in the calorific value of air fuel mixture (ed,v) for chosen fuels is occured for stoichiometric mixtures. At this point the difference Δ ed,v between natural gas and the producer gas is about 35%, while for the lean mixtures the difference is much less. The slight impact of air excess ratio on COVIMEP was noticed. The value decreases insensibly with air excess ratio decreasing. Obtained results are located at acceptable levels for power generation sources and are less than 5 %.
Źródło:
Combustion Engines; 2013, 52, 3; 371-378
2300-9896
2658-1442
Pojawia się w:
Combustion Engines
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Use of the gas ionization signal for combustion process diagnostics in the cylinder of a spark ignition engine
Autorzy:
Fiedkiewicz, Ł.
Pielecha, I.
Wisłocki, K.
Powiązania:
https://bibliotekanauki.pl/articles/133059.pdf
Data publikacji:
2017
Wydawca:
Polskie Towarzystwo Naukowe Silników Spalinowych
Tematy:
gas engine
ionization sensor
pressure sensor
engine control
lean fuel mixture
silnik gazowy
czujnik jonizacji
czujnik ciśnienia
sterowanie silnika
Opis:
The running diagnostics of the combustion process in an internal combustion engine is essential for increasing its efficiency and to improving its performance indicators. The modern diagnostics of this process no longer concerns only measurements of fast-changing thermodynamic variables, but also measurements of other parameters allowing for its evaluation. The use of electrical or optical methods in diagnostics enables the evaluation of local process parameters, such as occurrence of the flame and its temperature distribution. Actually, there are some new methods under investigation which are proposed for this kind of diagnostic. This article focuses on demonstrating the potential for using an electric signal from the gas ionization to estimate the maximum combustion pressure in a cylinder of an SI engine. This is a comparative analysis of the gas ionization current signal in the cylinder and the fast-changing pressure at fixed operating points of a 4-stroke natural gas powered engine. The study was carried out on a one-cylinder 4-stroke SI engine equipped with a cylinder pressure recording system and monitoring of the cylinder ionization current using appropriate measuring systems. The influence of engine operating conditions on the ability to determine cylinder pressure based on the ionization current signal was analyzed. This impact assessment was analyzed statistically and a strong correlation was found between the analyzed signals. The obtained results point in the potential direction of development of this type of measuring system.
Źródło:
Combustion Engines; 2017, 56, 4; 196-200
2300-9896
2658-1442
Pojawia się w:
Combustion Engines
Dostawca treści:
Biblioteka Nauki
Artykuł
    Wyświetlanie 1-7 z 7

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