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A review of phase change material and performance enhancement method for latent heat storage system

机译:潜热存储系统相变材料及性能增强方法综述

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摘要

Latent heat storage (LHS) is considered as the most promising technique for thermal energy storage, due to its high energy storage density and nearly constant working temperature. However, the lower thermal conductivity of the phase change material (PCM) used in LHS system seriously weakens thermal energy charging and discharging rates. In order to improve the thermal performance of LHS system, a lot of research on performance enhancement have been carried out. This review paper will concern on the development of PCMs and performance enhancement methods for LHS system in the last decade. The available enhancement methods can be classified into three categories: using high thermal conductivity additives and porous media to enhance PCM thermal conductivity, using finned tubes and encapsulated PCMs to extend heat transfer surface, using multi-stage or cascaded LHS technique and thermodynamic optimization to improving the heat transfer uniformity. The comparative reviews on PCMs, corresponding performance enhancement methods and their characteristics are presented in present paper. That will help in selecting reliable PCMs and matching suitable performance enhancement method to achieve the best thermal performance for PCM based LHS system. In addition, the research gaps in performance enhancement techniques for LHS systems are also discussed and some recommendations for future research are proposed.
机译:潜热存储(LHS)由于其高的能量存储密度和几乎恒定的工作温度而被认为是最有前途的热能存储技术。但是,LHS系统中使用的相变材料(PCM)的较低的热导率会严重削弱热能的充放电速率。为了改善LHS系统的热性能,已经进行了许多关于性能增强的研究。本文将关注过去十年来LHS系统的PCM和性能增强方法的发展。可用的增强方法可分为三类:使用高热导率添加剂和多孔介质来增强PCM热导率,使用翅片管和封装的PCM扩展传热表面,使用多级或级联LHS技术以及热力学优化来改进传热均匀性。本文对PCM,相应的性能增强方法及其特性进行了比较综述。这将有助于选择可靠的PCM,并匹配合适的性能增强方法,以使基于PCM的LHS系统达到最佳热性能。此外,还讨论了LHS系统性能增强技术的研究空白,并提出了一些对未来研究的建议。

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