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Results 1 to 25 of 3109

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Comparison between the single-PCM and multi-PCM thermal energy storage designALDOSS, Taha K; RAHMAN, Muhammad M.Energy conversion and management. 2014, Vol 83, pp 79-87, issn 0196-8904, 9 p.Article

Electrospun polyethylene glycol/cellulose acetate phase change fibers with core-sheath structure for thermal energy storageCHANGZHONG CHEN; YIYANG ZHAO; WENMIN LIU et al.Renewable energy. 2013, Vol 60, pp 222-225, issn 0960-1481, 4 p.Article

New kinds of energy-storing building composite PCMs for thermal energy storageBICER, Alper; SARI, Ahmet.Energy conversion and management. 2013, Vol 69, pp 148-156, issn 0196-8904, 9 p.Article

Thermal and mechanical properties of bio-based PCMs encapsulated with nanofibrous structureWEN HU; XUN YU.Renewable energy. 2014, Vol 62, pp 454-458, issn 0960-1481, 5 p.Article

A review of microencapsulation methods of phase change materials (PCMs) as a thermal energy storage (TES) mediumJAMEKHORSHID, A; SADRAMELI, S. M; FARID, M et al.Renewable & sustainable energy review. 2014, Vol 31, pp 531-542, issn 1364-0321, 12 p.Article

Exploiting solar energy potential through thermal energy storage in Slovenia and TurkeySTRITIH, Uros; OSTERMAN, Eneja; EVLIYA, Hunay et al.Renewable & sustainable energy review. 2013, Vol 25, pp 442-461, issn 1364-0321, 20 p.Article

Comparison of closed and open thermochemical processes, for long-term thermal energy storage applicationsMICHEL, Benoit; NEVEU, Pierre; MAZET, Nathalie et al.Energy (Oxford). 2014, Vol 72, pp 702-716, issn 0360-5442, 15 p.Article

Domestic hot water storage: Balancing thermal and sanitary performanceARMSTRONG, P; AGER, D; THOMPSON, I et al.Energy policy. 2014, Vol 68, pp 334-339, issn 0301-4215, 6 p.Article

Tests on a metal hydride based thermal energy storage systemSATYA SEKHAR, B; MUTHUKUMAR, P; SAIKIA, R et al.International journal of hydrogen energy. 2012, Vol 37, Num 4, pp 3818-3824, issn 0360-3199, 7 p.Conference Paper

Development of a novel refrigeration system for refrigerated trucks incorporating phase change materialMING LIU; SAMAN, Wasim; BRUNO, Frank et al.Applied energy. 2012, Vol 92, pp 336-342, issn 0306-2619, 7 p.Article

Effectiveness-NTU correlation for low temperature PCM encapsulated in spheresAMIN, N. A. M; BRUNO, F; BELUSKO, M et al.Applied energy. 2012, Vol 93, pp 549-555, issn 0306-2619, 7 p.Article

Parametric study and standby behavior of a packed-bed molten salt thermocline thermal storage systemCHAO XU; ZHIFENG WANG; YALING HE et al.Renewable energy. 2012, Vol 48, pp 1-9, issn 0960-1481, 9 p.Article

Review on phase change material emulsions and microencapsulated phase change material slurries: Materials, heat transfer studies and applicationsDELGADO, Monica; LAZARO, Ana; MAZO, Javier et al.Renewable & sustainable energy review. 2012, Vol 16, Num 1, pp 253-273, issn 1364-0321, 21 p.Article

Characterization of melting and solidification in a real-scale PCM―air heat exchanger: Experimental results and empirical modelDOLADO, Pablo; LAZARO, Ana; MARIN, Jose M et al.Renewable energy. 2011, Vol 36, Num 11, pp 2906-2917, issn 0960-1481, 12 p.Article

Modeling phase change materials embedded in building enclosure: A reviewAL-SAADI, Saleh Nasser; ZHAI, Zhiqiang (john).Renewable & sustainable energy review. 2013, Vol 21, pp 659-673, issn 1364-0321, 15 p.Article

Fabrication and properties of microencapsulated-paraffin/gypsum-matrix building materials for thermal energy storageSU, Jun-Feng; WANG, Xin-Yu; WANG, Sheng-Bao et al.Energy conversion and management. 2012, Vol 55, pp 101-107, issn 0196-8904, 7 p.Article

A comparison of experimental thermal stratification parameters for an oil/pebble-bed thermal energy storage (TES) system during chargingMAWIRE, Ashmore; TAOLE, Simeon H.Applied energy. 2011, Vol 88, Num 12, pp 4766-4778, issn 0306-2619, 13 p.Article

Preparation and heat transfer characteristics of microencapsulated phase change material slurry: A reviewZHI CHEN; FANG, Guiyin.Renewable & sustainable energy review. 2011, Vol 15, Num 9, pp 4624-4632, issn 1364-0321, 9 p.Article

Thermal energy storage characteristics of Cu―H2O nanofluidsWANG, X. J; LI, X. F; XU, Y. H et al.Energy (Oxford). 2014, Vol 78, pp 212-217, issn 0360-5442, 6 p.Article

CFD applications for latent heat thermal energy storage: a reviewAL-ABIDI, Abduljalil A; BIN MAT, Sohif; SOPIAN, K et al.Renewable & sustainable energy review. 2013, Vol 20, pp 353-363, issn 1364-0321, 11 p.Article

Sensitivity analysis of the numerical study on the thermal performance of a packed-bed molten salt thermocline thermal storage systemCHAO XU; ZHIFENG WANG; YALING HE et al.Applied energy. 2012, Vol 92, pp 65-75, issn 0306-2619, 11 p.Article

The impact of concrete structure on the thermal performance of the dual-media thermocline thermal storage tank using concrete as the solid mediumMING WU; MINGJIA LI; CHAO XU et al.Applied energy. 2014, Vol 113, pp 1363-1371, issn 0306-2619, 9 p.Article

Comparative life cycle assessment of thermal energy storage systems for solar power plantsORO, Eduard; GIL, Antoni; DE GRACIA, Alvaro et al.Renewable energy. 2012, Vol 44, pp 166-173, issn 0960-1481, 8 p.Article

Dynamic simulation of thermal energy storage system of Badaling 1 MW solar power tower plantERSHU XU; ZHIFENG WANG; GAO WEI et al.Renewable energy. 2012, Vol 39, Num 1, pp 455-462, issn 0960-1481, 8 p.Article

Thermodynamic analyses and assessments of various thermal energy storage systems for buildingsCALISKAN, Hakan; DINCER, Ibrahim; HEPBASLI, Arif et al.Energy conversion and management. 2012, Vol 62, pp 109-122, issn 0196-8904, 14 p.Article

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