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A review of performance enhancement of PCM based latent heat storage system within the context of materials, thermal stability and compatibility

机译:在材料,热稳定性和兼容性的背景下回顾基于PCM的潜热存储系统的性能增强

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摘要

Phase change materials (PCM) with their high thermal storage density at almost isothermal conditions and their availability at wide range of phase transitions promote an effective mode of storing thermal energy. Literature survey evidently shows that paraffins and salt hydrates provide better thermal performance at competitive cost. However, the efficient utilization of latent heat storage is limited by low thermal conductivity, phase segregation, subcooling and container material compatibility with PCMs. This review paper is focused on classification of various PCMs, long term thermal stability of paraffins and salt hydrates; their compatibility with different container materials and thermal performance enhancement techniques adopted by various researchers such as influence of container shape, employment of fins and high conductivity additives, multi-PCM approach and PCM encapsulation on phase transition rates and thermal energy storage density. The conclusions obtained from critical assessment of research work carried out on latent heat storage will encourage using reliable PCM with compatible container material and an efficient geometric configuration to achieve maximum thermal utilization of PCM.
机译:相变材料(PCM)在几乎等温的条件下具有很高的储热密度,并且在广泛的相变范围内都可以使用,从而促进了一种有效的热能存储方式。文献调查显然表明,石蜡和盐水合物以有竞争力的成本提供了更好的热性能。然而,潜热存储的有效利用受到低导热率,相分离,过冷以及容器材料与PCM的兼容性的限制。本文的重点是各种PCM的分类,石蜡和盐水合物的长期热稳定性。它们与不同容器材料的兼容性以及各种研究人员采用的热性能增强技术,例如容器形状的影响,翅片和高电导率添加剂的使用,multi-PCM方法和PCM封装对相变速率和热能存储密度的影响。从对潜热存储的研究工作的严格评估中得出的结论,将鼓励使用具有兼容容器材料的可靠PCM和有效的几何构造,以实现PCM的最大热利用率。

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