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A numerical investigation of heat transfer in phase change materials (PCMs) embedded in porous metals

机译:嵌入多孔金属中的相变材料(PCM)中传热的数值研究

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摘要

The effects of metal foams on heat transfer enhancement in Phase Change Materials (PCMs) are investigated. The numerical investigation is based on the two-equation non-equilibrium heat transfer model, in which the coupled heat conduction and natural convection are considered at phase transition and liquid zones. The numerical results are validated by experimental data. The main findings of the investigation are that heat conduction rate is increased significantly by using metal foams, due to their high thermal conductivities, and that natural convection is suppressed owing to the large flow resistance in metal foams. In spite of this suppression caused by metal foams, the overall heat transfer performance is improved when metal foams are embedded into PCM; this implies that the enhancement of heat conduction offsets or exceeds the natural convection loss. The results indicate that for different metal foam samples, heat transfer rate can be further increased by using metal foams with smaller porosities and bigger pore densities.
机译:研究了金属泡沫对相变材料(PCM)中传热增强的影响。数值研究基于两方程式非平衡传热模型,该模型考虑了相变和液体区域的热传导和自然对流耦合。数值结果通过实验数据验证。研究的主要发现是,由于金属泡沫具有较高的导热率,因此通过使用金属泡沫可显着提高导热率,并且由于金属泡沫中的大流动阻力而抑制了自然对流。尽管这种抑制是由金属泡沫引起的,但当将金属泡沫嵌入PCM时,整体的传热性能会得到改善;这意味着热传导的增加抵消或超过了自然对流损失。结果表明,对于不同的金属泡沫样品,通过使用孔隙率较小,孔密度较大的泡沫金属,可以进一步提高传热速率。

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  • 作者单位
  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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