Thermal energy storage as sensible or latent heat is an efficient way to conserve the waste heat and excess energy available such as solar radiation. Storage of latent heat using organic phase change materials (PCMs) offers greater energy storage density over a marginal melting and freezing temperature difference in comparison to inorganic materials. These favorable characteristics of organic PCMs make them suitable in a wide range of applications. These materials and their eutectic mixtures have been successfully tested and implemented in many domestic and commercial applications such as, building, electronic devices, refrigeration and air-conditioning, solar air/water heating, textiles, automobiles, food, and space industries. This review focuses on three aspects: the materials, encapsulation and applications of organic PCMs, and provides an insight on the recent developments in applications of these materials. Organic PCMs have inherent characteristic of low thermal conductivity (0.15-0.35 W/m K), hence, a larger surface area is required to enhance the heat transfer rate. Therefore, attention is also given to the thermal conductivity enhancement of the materials, which helps to keep the area of the system to a minimum. Besides, various available techniques for material characterization have also been discussed. It has been found that a wide range of the applications of organic PCMs in buildings and other low and medium temperature solar energy applications are in abundant use but these materials are not yet popular among space applications and virtual data storage media. In addition, it has also been observed that because of the low melting point of organic PCMs, they have not yet been explored for high temperature applications such as in power plants. (C) 2015 Elsevier Ltd. All rights reserved.
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机译:将热能存储为显热或潜热是节省废热和可用的多余能量(例如太阳辐射)的有效方法。与无机材料相比,使用有机相变材料(PCM)储存潜热可在边际熔化和凝固温度差的情况下提供更大的能量存储密度。有机PCM的这些有利特性使它们适用于广泛的应用。这些材料及其共晶混合物已在许多家庭和商业应用中成功测试并实现,例如建筑,电子设备,制冷和空调,太阳能空气/水加热,纺织,汽车,食品和航天工业。这篇综述着重于三个方面:有机PCM的材料,封装和应用,并对这些材料的最新应用提供了见识。有机PCM具有低热导率(0.15-0.35 W / m K)的固有特性,因此,需要更大的表面积以提高传热速率。因此,也要注意提高材料的导热性,这有助于将系统面积保持在最小。此外,还讨论了各种可用的材料表征技术。已经发现有机PCM在建筑物和其他中低温太阳能应用中的广泛应用被广泛使用,但是这些材料在空间应用和虚拟数据存储介质中尚未流行。此外,还已经观察到,由于有机PCM的熔点低,因此尚未在高温应用(如发电厂)中进行探索。 (C)2015 Elsevier Ltd.保留所有权利。
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