COMPARATIVE STUDY OF TWO TYPES OF MEDIUM TEMPERATURE PHASE CHANGE MATERIALS

Sol-Carolina Costa, M. Ismail, M. Kenisarin, K. Mahkamov, D. Mullen, E. Halimic, K. Lynn
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引用次数: 3

Abstract

This work presents a numerical comparative study of the melting and solidification processes of two medium temperature phase change materials (PCMs) for latent heat thermal energy storage (LHTES) applications. The PCMs compared are an inorganic solar salt and a Sn-based metal alloy, with the phase change temperatures around 220°C. The numerical comparative study was conducted in a 2D rectangular unit model with constant heat flux, the simulations were conducted deploying the enthalpy method in Ansys FLUENT software. The numerical results were validated using experimental results for one of the phase change materials studied. The charging and discharging times of the designed LHTES were studied for both phase change materials, finding that the metallic PCM LHTES showing superior performance. The charging and discharging time obtained for the solar salt LHTES, duplicate the time required using metallic PCM LHTES. Moreover, the final average temperature for the solar salt LHTES, shows significantly compare with the phase change temperature.
两种中温相变材料的比较研究
本文介绍了两种中温相变材料(PCMs)在潜热储能(LHTES)应用中的熔化和凝固过程的数值比较研究。所比较的pcm是无机太阳盐和锡基金属合金,相变温度约为220°C。在恒热流密度的二维矩形单元模型上进行数值对比研究,在Ansys FLUENT软件中采用焓法进行仿真。对某相变材料的实验结果进行了验证。研究了两种相变材料下设计的LHTES的充放电次数,发现金属PCM LHTES表现出更好的性能。获得的太阳能盐LHTES充放电时间是金属PCM LHTES充放电时间的两倍。此外,太阳盐LHTES的最终平均温度与相变温度有显著的差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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