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首页> 外文期刊>International Journal of Heat and Mass Transfer >Temperature fields generated by a circular heat source (CHS) in an infinite isotropic medium: Treatment of contact resistances with application to thin films
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Temperature fields generated by a circular heat source (CHS) in an infinite isotropic medium: Treatment of contact resistances with application to thin films

机译:无限各向同性介质中的圆形热源(CHS)产生的温度场:应用于薄膜的接触电阻的处理

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摘要

The temperature fields and heat fluxes created by a circular heat source (CHS) are derived for the case of a CHS embedded between two identical and isotropic semi-infinite media, when different thermal contact resistances (CRs) are present on each surface of the CHS. Three different temperature fields are derived: on the CHS surface and in each one of the media surrounding the CHS. The derivation of the three-dimensional heat flow solution uses first principles with no prior assumptions, and employs the Hankel and Laplace transforms. The analytical solution presented here is exact with no approximations, but is given in integral form, which requires a facile numerical evaluation. Finite element simulations performed with COMSOL Multiphysics are provided and validate the analytical solution. The application of the solution to thin film thermal conductivity virtual measurements is demonstrated. Regressions of the numerical results yield thin film resistances in excellent agreement with the actual values (all within 1.5% error), which can readily be translated into thin film thermal conductivities. (C) 2019 Elsevier Ltd. All rights reserved.
机译:当CHS嵌入在两个相同且各向同性的半无限介质之间时,当CHS的每个表面上存在不同的热接触电阻(CR)时,将推导出由圆形热源(CHS)产生的温度场和热通量。 。推导出三个不同的温度场:在CHS表面和CHS周围的每种介质中。三维热流解的推导使用没有先验假设的第一原理,并采用了汉克尔和拉普拉斯变换。此处提供的分析解决方案是精确的,没有近似值,但是以整数形式给出,这需要方便的数值评估。提供了使用COMSOL Multiphysics执行的有限元模拟,并验证了分析解决方案。演示了该解决方案在薄膜热导率虚拟测量中的应用。数值结果的回归表明,薄膜电阻与实际值极好一致(均在1.5%的误差范围内),可以很容易地转化为薄膜的热导率。 (C)2019 Elsevier Ltd.保留所有权利。

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