Thermal energy storage overview

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794 Energy Conversion and Management, vol 39, pp 1127-1138, 1998 [10] Hassan, E.S.F., Heat exchanger performance for latent heat thermal energy storage system, Energy Convers. Mgmt., 31(2):149-155, 1991 [11] Incropera, F.P., Dewit, D.P., Fundamentals of heat and mass transfer, 5th ed., John Wiley and Sons, 2002 [12] Khudhair, A.M., Farid, M.M., A review on energy conservation in building applications with thermal storage by latent heat using phase change material, Energy Convers. Mgmt., 45(2):263-275, 2004 [13] Nielsen, K., Thermal energy storage: A state-of-art, a report within the research program Smart Energy-Efficient Buildings at NTNU and SINTEF 2002-2006, 2003 [14] Pavlov, G.K., Olesen, B.W., Seasonal ground solar thermal energy storage – review of systems and applications, Proceedings of ISES Solar World Congress, Kassel (DE), 28.08-02.09.2011 [15] Pavlov, G.K., Olesen, B.W., Seasonal solar thermal energy storage through ground heat exchangers – review of systems and applications, Proceedings of 6th Dubrovnik Conference on Sustainable development of Energy, Water and Environmental Systems, Dubrovnik, Croatia, 25-29.09.2011 [16] Ravikumar, M., Srinivasan, DR.PSS., Phase change material as a thermal energy storage material for cooling of building, Journal of Theoretical and Applied Information Technology, http://www.jatit.org/volumes/research- papers/V ol4No6/6V ol4No6.pdf [17] Sanner, B., Knoblich, K., Advantages and problems of high temperature underground thermal energy storage, Bulletin d`Hidrogeologie No.17 (1999), Editions Peter Lang [18] Sunliang, C., State of the art thermal energy storage solutions for high performance buildings, Master`s thesis, University of Jyvaskyla, Finland, 2010 [19] Tyagi, V.V., Buddhi, D., Thermal cycle testing of calcium chloride hexahydrate as a possible PCM for latent heat storage, Solar Energy Materials & Solar Cells, vol 92, pp 891-899, 2008 [20] Zondag, H.A., Van Essen, V.M., Bleijendaal, L.P.J., Kikkert, B.W.J., Bakker, M., Application of MgCl2· 6H2O for thermochemical seasonal solar heat storage, Prezented at the 5th International Renewable Energy Storage Conference IRES 2010, 22-24.11.2010, Berlin, Germany Stocarea energiei termice: vedere de ansamblu Abstract: Acum, când încălzirea globală a devenit una dintre problemele cele mai urgente din lume, avem nevoie să găsim o modalitate mai bună de utilizare a energiei, mai ales în domeniul stocării energiei. În prezent, cea mai mare parte a energiilor regenerabile, în special energia eoliană şi cea solară sunt surse de energie cu densităţi variabile în cursul unei zile, a unei luni. Obiectivul principal al acestor sisteme este de a stoca căldura solară colectată (acumulată) în timpul verii şi de a o utiliza apoi la încălzirea spaţiilor pe timpul iernii. Aceste sisteme contribuie semnificativ la îmbunătăţirea eficienţei energetice şi la reducerea emisiilor de gaze în atmosferă. Dezvoltarea unor dispozitive eficiente şi necostisitoare pentru stocarea energiei este la fel de importantă ca şi dezvoltarea de noi surse de energie. Lavinia-Gabriela SOCACIU, PhD., Teacher Assistant, Technical University of Cluj-Napoca, Mechanical Engineering Department, lavinia.socaciu@termo.utcluj.ro View publication stats

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