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THERMAL CONDUCTIVITY ENHANCEMENT FOR PHASE CHANGE STORAGE MEDIA

机译:相变存储介质的热导率增强

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Thermal energy storage can be used as either a heat source or heat sink for spacecraft energy conversion and heat rejection systems. One major issue that needed to be addressed is that most phase-change materials (PCMs) with high energy storage density have an unacceptably low thermal conductivity. Two enhancement techniques are proposed in this paper. The baseline case utilizes LiH encapsulated in a thin SS304 container. The first enhancement technique uses LiH encapsulated in smaller containers of various shapes contained in a bigger cylindrical container filled with Li. The second enhancement technique focuses on a metal/phase-change material (M/PCM) composite. Specifically, 5% Ni is added uniformly to LiH so that the mixture has the same volume as the baseline storage unit. The enhancement techniques are analyzed numerically and their effectiveness is assessed for both constant surface heat flux and constant surface temperature conditions. Results shown include the amount of PCM melted as a function of time and the maximum temperature within the storage units. The M/PCM composite gives the best enhancement in thermal conductivity. [References: 5]
机译:热能存储可用作航天器能量转换和散热系统的热源或散热器。需要解决的一个主要问题是,大多数具有高能量存储密度的相变材料(PCM)的导热系数都低得无法接受。本文提出了两种增强技术。基线情况利用封装在薄SS304容器中的LiH。第一种增强技术使用LiH封装在各种形状的较小容器中,该容器包含在装满Li的较大圆柱形容器中。第二种增强技术着眼于金属/相变材料(M / PCM)复合材料。具体地,将5%的Ni均匀地添加到LiH中,使得混合物具有与基线存储单元相同的体积。对增强技术进行了数值分析,并评估了它们在恒定表面热通量和恒定表面温度条件下的有效性。显示的结果包括随时间变化的PCM熔化量和存储单元内的最高温度。 M / PCM复合材料具有最佳的导热性。 [参考:5]

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