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A numerical study of the melting of phase change material heated from a vertical wall of a rectangular enclosure

机译:从矩形外壳的垂直壁加热的相变材料融化的数值研究

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This article presents the first research effort of our group to formulate, implement and validate a numerical method in order to optimise the design of solar passive walls involving phase change materials (PCMs). The fusion of ice, gallium and the commercially available PCM 27 (hydrated salt), engineered by Cristopia and later embedded within an experiment unit, was studied. Comparisons against other prediction methods and experimental data for the fusion of gallium were carried out with good agreement of the solutions. The proposed enthalpy-based method is found to be excellent to predict the fusion, but still fails to reproduce adequately the exact solidification pattern measured for the PCM 27. Further research is going on to improve the model.
机译:本文介绍了我们小组为制定,实施和验证数值方法以优化涉及相变材料(PCM)的太阳能被动墙设计而进行的首次研究工作。研究了冰,镓和由Cristopia设计并随后嵌入实验单元中的市售PCM 27(水合盐)的融合。进行了与镓融合的其他预测方法和实验数据的比较,并与溶液具有很好的一致性。发现所提出的基于焓的方法非常适合预测熔合,但仍无法充分再现针对PCM 27测得的精确凝固模式。正在进行进一步的研究以改进模型。

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