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Thermal conductivity enhancement of phase change materials for thermal energy storage: A review

机译:储热相变材料导热系数的提高:综述

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A review of experimental/computational studies to enhance the thermal conductivity of phase change materials (PCM) that were conducted over many decades is presented. Thermal management of electronics for aeronautics and space exploration appears to be the original intended application, with later extension to storage of thermal energy for solar thermal applications. The present review will focus on studies that concern with positioning of fixed, stationary high conductivity inserts/structures. Copper, aluminum, nickel, stainless steel and carbon fiber in various forms (fins, honeycomb, wool, brush, etc.) were generally utilized as the materials of the thermal conductivity promoters. The reviewed research studies covered a variety of PCM, operating conditions, heat exchange and thermal energy storage arrangements. The energy storage vessels included isolated thermal storage units (rectangular boxes, cylindrical and annular tubes and spheres) and containers that transferred heat to a moving fluid medium passing through it. A few studies have focused on the marked role of flow regimes that are formed due to the presence of thermally unstable fluid layers that in turn give rise to greater convective mixing and thus expedited melting of PCM. In general, it can be stated that due to utilization of fixed high conductivity inserts/structures, the conducting pathways linking the hot and cold ends must be minimized.
机译:本文介绍了数十年来为增强相变材料(PCM)的导热性而进行的实验/计算研究。航空和航天探测电子设备的热管理似乎是最初的预期应用,后来又扩展到太阳能热应用的热能存储。本综述将集中于与固定的,固定的高电导率插入物/结构的定位有关的研究。通常使用各种形式的铜,铝,镍,不锈钢和碳纤维(鳍,蜂窝,羊毛,刷子等)作为热导促进剂的材料。经过审查的研究涵盖了各种PCM,运行条件​​,热交换和热能存储安排。储能容器包括隔离的储热单元(矩形箱,圆柱管和环形管以及球体)和将热量传递到通过它的移动流体介质的容器。一些研究集中在由于热不稳定流体层的存在而形成的流动状态的显着作用上,而热不稳定流体层又导致更大的对流混合并因此加速了PCM的熔化。通常,可以说由于使用固定的高电导率插入物/结构,连接热端和冷端的传导路径必须最小化。

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