Phase Change Materials for Renewable Energy Storage Applications

B. Srinivasaraonaik, Shishir Sinha, L. Singh
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Abstract

Solar energy is utilizing in diverse thermal storage applications around the world. To store renewable energy, superior thermal properties of advanced materials such as phase change materials are essentially required to enhance maximum utilization of solar energy and for improvement of energy and exergy efficiency of the solar absorbing system. This chapter deals with basics of phase change material which reflects, selection criteria, PCM works, distinguish thermal energy storage system, commercially available PCM, development of PCM thermal properties and durability of PCM. In addition to this chapter focused on PCM in solar water heating system for buildings particularly in India because 20–30% of electricity is used for hot water in urban households, residential and institutional buildings. Discussed Flat plate collectors (FTC) in detail which is suitable for warm water production in household temperature 55 to 70 °C owing to cost effective than the Evacuated Tube collectors (ETC), Concentrated collector (CC) and integration of different methods PCM in solar water heating system.
相变材料在可再生能源存储中的应用
太阳能在世界各地的各种蓄热应用中得到利用。为了存储可再生能源,本质上要求相变材料等先进材料具有优异的热性能,以提高太阳能的最大利用率,提高太阳能吸收系统的能量和能源效率。本章主要介绍相变材料的基本原理,相变材料的选择标准,相变材料的工作原理,不同的热能储存系统,商用相变材料,相变材料热性能的发展以及相变材料的耐久性。此外,本章还重点介绍了PCM在建筑太阳能热水系统中的应用,特别是在印度,因为20-30%的电力用于城市家庭、住宅和机构建筑的热水。详细讨论了平板集热器(FTC)与真空管集热器(ETC)、集中式集热器(CC)相比具有成本效益,适用于家用温度55 ~ 70°C的热水生产,并将不同方法的PCM集成到太阳能热水系统中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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