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Review on thermal performances and applications of thermal energy storage systems with inorganic phase change materials

机译:无机相变材料在热能存储系统中的热性能及应用综述

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For solving the global problems of environmental pollution and energy shortages, thermal energy storage system that can improve the efficiency and utilization ratio of energy and solve the gap between energy demand and supply, has received more attention in recent years. More specifically, the latent thermal storage systems that use phase change materials (PCMs) as storage media, possessing high latent heat storage density and almost constant phase change temperature are the focus area in thermal energy storage. Previously, most of the researches on PCMs were organic, however in recent years, inorganic PCMs with large phase change temperature range have been paid more and more attention. In common inorganic PCMs, hydrated salts possess lower phase change temperature, applying in buildings, solar water heating systems, textiles, etc., and molten salts and metals have higher phase change temperature, applying in concentrated solar power (CSP) generation and industrial waste heat recovery etc. Each has its own outstanding merits, for example, inorganic salts possess a large latent heat storage capacity and metals possess an extremely high thermal conductivity. Therefore, this review focuses on the researches of inorganic PCMs in recent years and summaries their thermal properties, and introduces the integration of inorganic PCMs into heat exchangers and some applications of inorganic PCMs in main systems, seeking to give readers a relatively comprehensive awareness on them. (C) 2018 Elsevier Ltd. All rights reserved.
机译:为了解决全球环境污染和能源短缺的问题,近年来,能够提高能源的利用率和利用率并解决能源供需缺口的热能存储系统受到了越来越多的关注。更具体地,使用具有高潜热存储密度和几乎恒定的相变温度的相变材料(PCM)作为存储介质的潜热存储系统是热能存储的重点领域。以前,大多数关于PCM的研究都是有机的,但是近年来,具有大的相变温度范围的无机PCM已受到越来越多的关注。在常见的无机PCM中,水合盐具有较低的相变温度,适用于建筑物,太阳能热水系统,纺织品等;熔融盐和金属具有较高的相变温度,适用于浓缩太阳能发电(CSP)和工业废物每种都有自己的突出优点,例如,无机盐具有很大的潜热存储能力,而金属则具有极高的导热率。因此,本文综述了近年来无机PCM的研究现状,总结了它们的热性能,并介绍了无机PCM在换热器中的集成以及无机PCM在主要系统中的一些应用,力求使读者对其有较全面的认识。 。 (C)2018 Elsevier Ltd.保留所有权利。

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