Thermal Spreading Resistance of Arbitrary-Shape Heat Sources on a Half-Space: A Unified Approach

E. Sadeghi, M. Bahrami, N. Djilali
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引用次数: 22

Abstract

Thermal spreading/constriction resistance is an important phenomenon where a heat source/sink is in contact with a body. Thermal spreading resistance associated with heat transfer through the mechanical contact of two bodies occurs in a wide range of applications. The real contact area forms typically a few percent of the nominal contact area. In practice, due to random nature of contacting surfaces, the actual shape of microcontacts is unknown; therefore, it is advantageous to have a model applicable to any arbitrary-shape heat source. Starting from a half-space representation of the heat transfer problem, a compact model is proposed based on the generalization of the analytical solution of the spreading resistance of an elliptical source on a half-space. Using a “bottom-up” approach, unified relations are found that allow accurate calculation of spreading resistance over a wide variety of heat source shapes under both isoflux and isothermal conditions.
半空间上任意形状热源的热扩散阻力:一个统一的方法
当热源/散热器与物体接触时,热扩散/收缩阻力是一个重要现象。在广泛的应用中,通过两个物体的机械接触进行热传递所引起的热扩散阻力。实际接触面积通常占标称接触面积的百分之几。在实际应用中,由于接触面的随机性,微触点的实际形状是未知的;因此,有一个适用于任意形状热源的模型是有利的。从传热问题的半空间表示出发,在推广椭圆源在半空间上扩散阻力解析解的基础上,提出了一个紧凑模型。使用“自下而上”的方法,统一的关系被发现,允许精确计算在各种热源形状在等流和等温条件下的扩散阻力。
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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