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Wyszukujesz frazę "Thermal Energy System" wg kryterium: Wszystkie pola


Tytuł:
PV/T Systems for Renewable Energy Storage: A Review
Autorzy:
Avijit, Mallik
Hasan, Md. Zahid
Powiązania:
https://bibliotekanauki.pl/articles/1177985.pdf
Data publikacji:
2018
Wydawca:
Przedsiębiorstwo Wydawnictw Naukowych Darwin / Scientific Publishing House DARWIN
Tematy:
HVAC
PV/T System
Solar Heat Radiation
Solar Power
Thermal Energy System
Opis:
Sunlight is converted into electricity and heat simultaneously with the help of PV thermal panels. It is examined that the efficiency of the PV/T panel is higher than the separate PV panels and solar thermal collectors’ efficiency. The electricity conversion-efficiency for a PV system is about 6% to 15% and in moreover cases 85% of the incoming solar energy is either reflected or absorbed as heat energy. Now a day’s Renewable energy has become a hot topic. The energy researchers day by day making advanced researches to make this type of system a useable one. Non-renewable sources will be approximately finished within next 100-150 years. So this type of energy is very important for everyone. Normally researches are made on producing electricity from renewable sources like sun-light, wind energy, tidal energy and etc. In this paper there is a compact review of solar photovoltaic thermal system. The performance of the solar cell decreases with the increasing of temperature. Both the electrical efficiency and the power output of PV module depend on the operating temperature. Photovoltaic thermal hybrid solar collectors, also known as hybrid PV/T systems are systems in which sunlight is converted into thermal and electrical energy both. This paper contains a combination of basic and advanced hybrid PV/T systems that are usable in Asian region.
Źródło:
World Scientific News; 2018, 96; 83-95
2392-2192
Pojawia się w:
World Scientific News
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Identification of the objective function for optimization of a seasonal thermal energy storage system
Autorzy:
Milewski, J.
Szabłowski, Ł.
Bujalski, W.
Powiązania:
https://bibliotekanauki.pl/articles/240823.pdf
Data publikacji:
2014
Wydawca:
Polska Akademia Nauk. Czytelnia Czasopism PAN
Tematy:
thermal energy
solar
storage
seasonal storage
energia cieplna
magazynowanie
Opis:
The article shows the proposed solution of the objective function for the seasonal thermal energy storage system. In order to develop this function the technological and economic assumptions were used. In order to select the optimal system configuration mathematical models of the main elements of the system were built. Using these models, and based on the selected design point, the simulation of the entire system for randomly generated outside temperatures was made. The proposed methodology and obtained relationships can be readily used for control purposes, constituting model predicted control (MPC).
Źródło:
Archives of Thermodynamics; 2014, 35, 4; 69-81
1231-0956
2083-6023
Pojawia się w:
Archives of Thermodynamics
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Hybrid nano improved phase change material for latent thermal energy storage system: Numerical study
Autorzy:
Benlekkam, Mohamed Lamine
Nehari, Driss
Powiązania:
https://bibliotekanauki.pl/articles/2065756.pdf
Data publikacji:
2022
Wydawca:
Polska Akademia Nauk. Czytelnia Czasopism PAN
Tematy:
phase change material (PCM)
latent heat storage
melting
solidification
thermal energy storage
hybrid nanoparticle
LHTESS
materiał zmiennofazowy
magazynowanie ciepła utajonego
topienie
krzepnięcie
magazynowanie energii cieplnej
hybrydowa nanocząstka
Opis:
The phase change materials (PCM) are widely used in several applications, especiallyi n the latent heat thermal energy storage system (LHTESS). Due to the very low thermal conductivity of PCMs. A small mass fraction of hybrid nanoparticles TiO 2–CuO (50%–50%) is dispersed in PCM with five mass concentrations of 0%, 0.25%, 0.5%, 0.75% and 1 mass % to improve its thermal conductivity. This article is focused on thermal performance of the hybrid nano-PCM (HNPCM) used for the LHTESS. A numerical model based on the enthalpy-porosity technique is developed to solve the Navier-Stocks and energy equations. The computations were conducted for the melting and solidification processes of the HNPCM in a shell and tube latent heat storage (LHS). The developed numerical model was validated successfully with experimental data from the literature. The results showed that the dispersed hybrid nanoparticles improved the effective thermal conductivity and density of the HNPCM. Accordingly, when the mass fraction of a HNPCM increases by 0.25%, 0.5%, 0.75% and 1 mass %, the average charging time improves by 12.04 %, 19.9 %, 23.55%, and 27.33 %, respectively. Besides, the stored energy is reduced by 0.83%, 1.67%, 2.83% and 3.88%, respectively. Moreover, the discharging time was shortened by 18.47%, 26.91%, 27.71%, and 30.52%, respectively.
Źródło:
Archive of Mechanical Engineering; 2022, LXIX, 1; 77--98
0004-0738
Pojawia się w:
Archive of Mechanical Engineering
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Towards development of a prototype high-temperature latent heat storage unit as an element of a RES-based energy system (part 1)
Autorzy:
Bogucka-Bykuć, K.
Włosiński, W.
Bykuć, S.
Powiązania:
https://bibliotekanauki.pl/articles/201522.pdf
Data publikacji:
2014
Wydawca:
Polska Akademia Nauk. Czytelnia Czasopism PAN
Tematy:
latent heat storage
LHS
thermal energy storage system
TESS
phase change material
PCM
renewable energy sources
RES
Opis:
This paper presents briefly the state of the art literature review with respect to research in the field of latent heat storage systems as elements of heat only, power only or combined heat and power (CHP) plants utilizing renewable energy sources (RES) for residential applications. Next, a paper introduces initial research carried out in IMP PAN in Gdańsk, Poland, aimed at development of a prototype latent heat storage unit. Identification of the suggested application for the storage unit in a given system is presented. The first stage of development of a prototype heat storage unit, namely a process of PCM pre-selection is discussed.
Źródło:
Bulletin of the Polish Academy of Sciences. Technical Sciences; 2014, 62, 3; 489-494
0239-7528
Pojawia się w:
Bulletin of the Polish Academy of Sciences. Technical Sciences
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
A concept of a thermal comfort system with energy storage in structure of the building
Koncepcja systemu do utrzymywania komfortu cieplnego w budynku wykorzystującego magazynowanie energii w strukturze budynku
Autorzy:
Zbrowski, A.
Kozioł, S.
Jóźwik, W.
Prymon, M.
Powiązania:
https://bibliotekanauki.pl/articles/257608.pdf
Data publikacji:
2016
Wydawca:
Sieć Badawcza Łukasiewicz - Instytut Technologii Eksploatacji - Państwowy Instytut Badawczy
Tematy:
phase change material
thermal comfort
energy storage
materiał zmiennofazowy
komfort cieplny
magazynowanie energii
Opis:
The manuscript presents concept of system for keeping thermal comfort in low-energy buildings with the use of the energy storage in the structural elements of the building. The system uses both the daily fluctuations of outdoor air temperature as well solar energy, respectively, to remove the heat gains during summer and compensate heat losses during winter. In order to achieve the required heat capacity with the low temperature difference, it is necessary to provide the sufficiently large heat transfer area and an efficient energy storage system. An effective system capable of providing thermal comfort conditions in a building with acceptable cost requires maximizing heat capacity and heat transfer conditions as well as an enlarged heat transfer area. Providing an acceptable payout time also requires the use of typical structural elements of the building as energy reservoirs. Therefore, it was assumed that the accumulation of the energy should be provided by modified gypsum plasterboards used for drywall construction. Ventilated, multichannel wall plates made of gypsum modified by an admixture of the phase change materiał (PCM) with a melting point close to the temperature of thermal comfort in residential buildings provide a large heat capacity and a relatively stable temperature during processes of energy absorption and emission.
Artykuł przedstawia koncepcję systemu utrzymującego komfort cieplny w budynku energooszczędnym wykorzystującego magazynowanie ciepła w strukturze obiektu budowlanego. System wykorzystuje dzienne wahania temperatury i energię słoneczną do usuwania zysków ciepła latem i kompensowania strat zimą. W celu osiągnięcia wymaganej pojemności cieplnej systemu przy niewielkich zmianach temperatury, konieczne jest zapewnienie wystarczającej powierzchni wymiany ciepła i wydajnego systemu magazynowania energii. Efektywny system, umożliwiający uzyskanie komfortu cieplnego przy akceptowalnym okresie zwrotu, wymaga zmaksymalizowania pojemności cieplnej, współczynnika wnikania oraz powierzchni wymiany ciepła. Zapewnienie możliwie krótkiego czasu amortyzacji systemu wymaga również wykorzystania typowych elementów konstrukcji budynku jako magazynów energii. W rozwiązaniu przyjęto, że akumulacja energii jest zapewniona przez zmodyfikowane płyty gipsowe wykorzystywane do suchej zabudowy. Wentylowana, wielokanałowa płyta ścienna wykonana z gipsu zmodyfikowanego przez dodatek materiału zmienno-fazowego (PCM - ang. Phase Change Material) o temperaturze topnienia zbliżonej do temperatury komfortu cieplnego w budynku mieszkalnym, zapewnia wymaganą pojemność cieplną, dużą powierzchnię wymiany ciepła i niewielką różnicę temperatury podczas pochłaniania i oddawania energii.
Źródło:
Problemy Eksploatacji; 2016, 4; 155-163
1232-9312
Pojawia się w:
Problemy Eksploatacji
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Integration of Heat Storage Technologies in District Heating Systems
Autorzy:
Konyk, Alina
Demchenko, Vladimir
Powiązania:
https://bibliotekanauki.pl/articles/2069933.pdf
Data publikacji:
2021
Wydawca:
Politechnika Koszalińska. Wydawnictwo Uczelniane
Tematy:
thermal energy storage
district heating system
mobile thermal energy storage
Opis:
Global trends in the efficiency, safety of energy systems and energy conservation actualize the task of developing new technologies for energy storage and transportation. The article considers current technologies of storage and accumulation of thermal energy, which can be used in central heating systems, and draws conclusions about the feasibility of their use. Also, the classification of energy storage systems is presented. The most perspective thermal energy storage, which can be used to equalize the load on the energy source to ensure the peak demand for heat with a high coefficient of utilization of the equipment capacity, is noted.
Źródło:
Rocznik Ochrona Środowiska; 2021, 23; 493--502
1506-218X
Pojawia się w:
Rocznik Ochrona Środowiska
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Solar Heating for Pit Thermal Energy Storage – Comparison of Solar Thermal and Photovoltaic Systems in TRNSYS 18
Autorzy:
Słomczyńska, Klaudia
Mirek, Paweł
Panowski, Marcin
Powiązania:
https://bibliotekanauki.pl/articles/2206281.pdf
Data publikacji:
2022
Wydawca:
Stowarzyszenie Inżynierów i Techników Mechaników Polskich
Tematy:
solar energy
district heating
heat storage system
pit thermal energy storage
TRNSYS
Opis:
Solar collectors and photovoltaic panels are devices widely used for heating water for both heating and domestic purposes. Due to the variable nature of solar radiation, it is advisable to include in solar energy-based systems thermal storages that accumulate energy at times of overproduction and discharge it at times of demand. In this paper, we present the results of simulation research to compare the possibility of two different charging systems for a 24000 m3 seasonal pit thermal energy storage (PTES). The first uses electricity generated by photovoltaic panels and converted to heat in an electrode boiler to charge the heat store. The second is utilising a solar collector for this purpose. Based on the simulation calculations carried out in TRNSYS 18, it can be concluded that, from an investment perspective, a system based on solar collectors is more cost-effective. In addition, the installation takes up less space compared to a photovoltaic panel farm.
Źródło:
Advances in Science and Technology. Research Journal; 2022, 16, 5; 40--51
2299-8624
Pojawia się w:
Advances in Science and Technology. Research Journal
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Efektywność ocieplenia czyli trwałość i estetyka elewacji
Autorzy:
Śliwiński, M.
Powiązania:
https://bibliotekanauki.pl/articles/128811.pdf
Data publikacji:
2017
Wydawca:
PWB MEDIA Zdziebłowski
Tematy:
ocieplenie
efektywność
oszczędność energii
trwałość
estetyka
bezawaryjność
system ocieplania
thermal insulation
efficiency
energy savings
durability
esthetics
reliability
thermal insulation system
Źródło:
Builder; 2017, 21, 6; 78-80
1896-0642
Pojawia się w:
Builder
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
A system for monitoring and controlling a thermal energy store and an energy capture system
Autorzy:
Pietkiewicz, P.
Nalepa, K.
Miąskowski, W.
Wilamowska-Korsak, M.
Powiązania:
https://bibliotekanauki.pl/articles/202263.pdf
Data publikacji:
2018
Wydawca:
Polska Akademia Nauk. Czytelnia Czasopism PAN
Tematy:
energy storage
phase change materials
SCADA MHI
energy monitoring
magazynowanie energii
materiały do zmiany fazy
monitorowanie energii
Opis:
The structure and operating principles of a system for monitoring and controlling the operation of a thermal energy store have been presented in this study. As a novel feature of the presented solution, the device can be operated as a thermal energy store that relies on specific heat of fluids or phase transition heat when packages of phase change materials (PCM) are placed inside the device. Grates were used to arrange PCM packages in a manner that guarantees the flow of the heat transfer medium. The grates were equipped with temperature sensors to control thermal decomposition throughout the entire tank. The use of aerogel for thermal insulation was also a novel solution. Only a thin layer of aerogel was required to reduce heat loss across the tank wall. The structure and functionality of the modelled thermal energy store correspond to real-life conditions. The model can be used to test monitoring and control systems and to analyse the phenomena observed during the operation of similar devices. The operation of the thermal energy store can be regularly monitored and controlled on-line from any location in the world. The developed model supports the automatic import of operating parameters into a database for further analysis.
Źródło:
Bulletin of the Polish Academy of Sciences. Technical Sciences; 2018, 66, 6; 941-946
0239-7528
Pojawia się w:
Bulletin of the Polish Academy of Sciences. Technical Sciences
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Performance analysis and PCM selection for adsorption chiller aided by energy storage supplied from the district heating system
Autorzy:
Karwacki, Jarosław
Kwidziński, Roman
Leputa, Piotr
Powiązania:
https://bibliotekanauki.pl/articles/2204066.pdf
Data publikacji:
2022
Wydawca:
Polska Akademia Nauk. Czytelnia Czasopism PAN
Tematy:
thermal sorption cooling
phase change material
thermal energy storage
district heating
adsorption
energy management
mathematical modelling
load shifting
efficiency
Opis:
The paper presents a theoretical analysis of thermal energy storage filled with phase change material (PCM) that is aimed at optimization of an adsorption chiller performance in an air-conditioning system. The equations describing a lumped parameter model were used to analyze internal heat transfer in the cooling installation. Those equations result from the energy balances of the chiller, PCM thermal storage unit and heat load. The influence of the control of the heat transfer fluid flow rate and heat capacity of the system components on the whole system operation was investigated. The model was used to validate the selection of Rubitherm RT62HC as a PCM for thermal storage. It also allowed us to assess the temperature levels that are likely to appear during the operation of the system before it will be constructed.
Źródło:
Archives of Thermodynamics; 2022, 43, 4; 135--169
1231-0956
2083-6023
Pojawia się w:
Archives of Thermodynamics
Dostawca treści:
Biblioteka Nauki
Artykuł

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