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High temperature latent heat thermal energy storage: Phase change materials, design considerations and performance enhancement techniques

机译:高温潜热热能存储:相变材料,设计考虑和性能增强技术

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摘要

A very common problem in solar power generation plants and various other industrial processes is the existing gap between the period of thermal energy availability and its period of usage. This situation creates the need for an effective method by which excess heat can be stored for later use. Latent heat thermal energy storage is one of the most efficient ways of storing thermal energy through which the disparity between energy production or availability and consumption can be corrected, thus avoiding wastage and increasing the process efficiency. This paper reviews a series of phase change materials, mainly inorganic salt compositions and metallic alloys, which could potentially be used as storage media in a high temperature (above 300 ℃) latent heat storage system, seeking to serve the reader as a comprehensive thermophysical properties database to facilitate the material selection task for high temperature applications. Widespread utilization of latent heat storage systems has been held back by the poor thermal conductivity and some other inherent drawbacks of the use of PCMs; this paper reviews several heat transfer and performance enhancement techniques proposed in the literature and discusses a number of design considerations that must be taken into account aiming to provide a broad overview for the design of high temperature latent heat based thermal energy storage systems.
机译:在太阳能发电厂和各种其他工业过程中,一个非常普遍的问题是热能可利用期与其使用期之间存在差距。这种情况导致需要一种有效的方法,通过该方法可以存储多余的热量以备后用。潜热热能存储是存储热能的最有效方法之一,通过它可以纠正能源生产或可用性与消耗之间的差异,从而避免浪费并提高过程效率。本文综述了一系列相变材料,主要是无机盐成分和金属合金,它们有可能在高温(300℃以上)潜热存储系统中用作存储介质,以期为读者提供全面的热物理性质数据库可简化高温应用中的材料选择任务。潜在的储热系统的广泛使用由于导热系数差和使用PCM的其他一些固有缺点而受到阻碍。本文回顾了文献中提出的几种传热和性能增强技术,并讨论了必须考虑的许多设计注意事项,旨在为基于高温潜热的热能存储系统的设计提供广泛的概述。

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