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Numerical analysis of melting of nano-enhanced phase change material in latent heat thermal energy storage system

机译:持久热热能储存系统中纳米增强相变材料熔化的数值分析

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The heat transfer enhancement in the latent heat thermal energy storage system through dispersion of nanoparticle is reported. The resulting nanoparticle-enhanced phase change materials exhibit enhanced thermal conductivity in comparison to the base material. Calculation is performed for nanoparticle volume fraction from 0 to 0.08. In this study rectangular and cylindrical containers are modeled numerically and the effect of containers dimensions and nano particle volume fraction are studied. It has been found that the rectangular container requires half of the melting time as for the cylindrical container of the same volume and the same heat transfer area and also, higher nano particle volume fraction result in a larger solid fraction. The increase of the heat release rate of the nanoparticle-enhanced phase change materials shows its great potential for diverse thermal energy storage application.
机译:报道了纳米粒子分散的潜热热能存储系统中的传热增强。与基材相比,所得纳米颗粒增强相变材料具有增强的导热性。对纳米颗粒体积分数0至0.08进行计算。在该研究中,研究了矩形和圆柱形容器,研究了容器尺寸和纳米颗粒体积分数的效果。已经发现,矩形容器需要相同体积和相同传热面积的圆柱形容器的一半熔化时间,并且还具有较高的纳米颗粒体积分数导致更大的固体级分。纳米颗粒增强相变材料的热释放速率的增加显示了其多样化热能储存应用的潜力。

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