Heat storage material: a hope in solar thermal

被引:0
作者
Ravin Sehrawat
Ravinder Kumar Sahdev
Sumit Tiwari
机构
[1] University Institute of Engineering & Technology,
[2] Maharshi Dayanand University,undefined
[3] Shiv Nadar Institution of Eminence Deemed to be University,undefined
关键词
Thermal energy storage; Phase change material; Nanoparticle-enhanced PCM; Carbon-enhanced PCM; Metallic fin-enhanced PCM;
D O I
暂无
中图分类号
学科分类号
摘要
Solar energy is a vast renewable energy source, but uncertainty in the demand and supply of energy due to various geographical regions raises a question mark. Therefore, the present manuscript includes a review to overcome this uncertainty by utilizing various thermal energy storage systems. Phase change material is the most preferred thermal energy storage system because of its high-energy storage density. The low thermal conductivity is the critical problem in phase change material that can be overcome by integrating metallic foam, carbon fiber, and metallic fins in the phase change material container. The inclusion of metallic foam limited to 0.1–3% of the Phase change material (PCM) weight leads to a slight change in thermal conductivity but a high cost. It was also seen that the addition of carbon 0.1 to 9% of the PCM weight could improve the performance of PCM. The inclusion of a metallic fin improves the thermal conductivity with the various shapes and sizes of the fin. It is found that metallic foam composites have better performance than carbon composite and metallic fin inclusion.
引用
收藏
页码:11175 / 11198
页数:23
相关论文
共 454 条
[61]  
Baniasadi S(2020)Investigations on an evacuated tube solar water heater using hybrid-nano based organic phase change material Int J Green Energy 17 872-464
[62]  
Ranjbar O(1998)Energy storage applications in greenhouses by means of phase change materials (PCMs): a review Renew Energy 13 89-2742
[63]  
Boostanipour C(2009)Experimental assessment of a phase change material for wall building use Appl Energy 86 2038-208
[64]  
Barreneche A(2011)A review on phase change materials integrated in building walls Renew Sustain Energy Rev 15 379-46
[65]  
Sole L(2014)Thermal properties measurement and heat storage analysis of paraffin/graphite composite phase change material Compos B Eng 66 518-5919
[66]  
Miro I(2006)Definition, test and simulation of a thermochemical storage process adapted to solar thermal systems Sol Energy 80 883-7745
[67]  
Martorell AI(2004)Approximate analytical model for two-phase solidification problem in a finned phase-change material storage Appl Energy 77 131-867
[68]  
Fernandez LF(2010)A review on concepts, applications, and models of aquifer thermal energy storage systems Energies 3 1320-845
[69]  
Cabeza F(2019)Stearic acid/expanded graphite as a composite phase change thermal energy storage material for tankless solar water heater Sustain Cities Soc 44 458-1661
[70]  
Berroug EK(2018)Review on TC enhancement, thermal properties and applications of phase change materials in thermal energy storage Renew Sustain Energy Rev 82 2730-2396