Latent Heat Storage with Phase Change Materials (PCMs)

Huili Zhang, J. Baeyens, J. Degrève, François Pitié
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引用次数: 7

Abstract

Latent heat thermal energy storage with phase change materials (PCMs) is attractive since providing a high energy density storage due to the phase change by solidification/melting at constant temperature. Relative to sensible heat energy storage systems, latent heat storage with PCMs requires a smaller weight and volume of material for a given amount of captured/stored energy, and has the capacity to store heat of fusion at a constant or nearly constant temperature, thus maintaining a high and constant temperature difference between the heat exchanging surface and the PCMs. The present review paper will summarize the required properties of PCMs, with their respective advantages and disadvantages; the current state of development and manufacturing; the development of PCM applications, including their incorporation into heat exchangers, insertion of a metal matrix into the PCM, the use of PCM dispersed with high conductivity particles. PCM uses will be illustrated through some case-studies.
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相变材料(PCMs)潜热储存技术
潜热相变材料(PCMs)由于在恒温下凝固/熔化的相变而提供了高能量密度的储能,因此具有很大的吸引力。相对于显热蓄能系统,pcm的潜热蓄能需要更小的材料重量和体积来捕获/储存一定量的能量,并且具有在恒定或接近恒定温度下储存聚变热的能力,从而保持换热表面和pcm之间的高且恒定的温差。本文综述了PCMs的性能要求,以及各自的优点和缺点;开发制造现状;PCM应用的发展,包括将其纳入热交换器,在PCM中插入金属基体,使用分散在高导电性颗粒中的PCM。将通过一些案例研究说明PCM的使用。
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