首页> 外文会议>American Society of Mechanical Engineers(ASME) Summer Heat Transfer Conference(HT2005) vol.2; 20050717-22; San Francisco,CA(UA) >HEAT TRANSFER PERFORMANCE OF A POROUS METAL FOAM/PHASE CHANGE MATERIAL SYSTEM, PART 1: FREEZING
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HEAT TRANSFER PERFORMANCE OF A POROUS METAL FOAM/PHASE CHANGE MATERIAL SYSTEM, PART 1: FREEZING

机译:多孔金属泡沫/相变材料系统的传热性能,第1部分:冻结

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摘要

A detailed experimental study has been performed to evaluate the heat transfer performance of a solid/liquid phase-change thermal energy storage system that includes porous metal foam. The phase-change material (PCM) and metal foam were contained in a vertically oriented test cylinder that is cooled at its outside boundary, resulting in radially inward freezing. As the PCM freezes, the solid/liquid interface moves inward from the surface of the test cylinder, and a thermal resistance layer is built up, resulting in a reduced heat transfer rate between the system to be cooled and the PCM. The porous material used in this research was intended to minimize the insulating effect of this thermal resistance layer. In the freezing case study, a one-dimensional mathematical model was developed, which considered heat conduction as the only mode of heat transfer. The effective thermal conductivity of the porous media saturated with solid eicosane was predicted utilizing several models and compared with the measured effective thermal conductivity. The results of this study are discussed in terms of the effectiveness of the metal foam as a heat transfer enhancement device.
机译:已经进行了详细的实验研究,以评估包括多孔金属泡沫的固/液相变热能存储系统的传热性能。相变材料(PCM)和金属泡沫包含在垂直定向的测试筒中,该筒在其外边界处冷却,从而导致径向向内冻结。当PCM冻结时,固/液界面从测试气缸的表面向内移动,并且形成了一个热阻层,导致要冷却的系统与PCM之间的传热速率降低。本研究中使用的多孔材料旨在最大程度地降低此热阻层的绝缘效果。在冻结案例研究中,开发了一个一维数学模型,该模型将热传导视为唯一的热传递方式。使用几种模型预测了被固体二十烷饱和的多孔介质的有效导热系数,并将其与测得的有效导热系数进行了比较。就泡沫金属作为传热增强装置的有效性而言,讨论了该研究的结果。

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