首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Estimation of spatially varying thermal contact resistance from finite element solutions of boundary inverse heat conduction problems split along material interface
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Estimation of spatially varying thermal contact resistance from finite element solutions of boundary inverse heat conduction problems split along material interface

机译:从沿材料界面分裂的边界逆导热问题的有限元解估计空间变化的热接触电阻

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摘要

This paper presents a method for estimating spatially varying thermal contact resistance from a computational point of view. The method starts by splitting the computational domain along material interface to yield two boundary inverse heat conduction problems. Temperatures computed from analytical solutions are specified at only three interior points of each material instead of temperatures available from experiments. A number of equations constructed from modified cubic spline specified along the interface are incorporated into finite element equations during the Solution process. After extracting temperatures and heat transfer rates from both finite element solutions, which are solved separately, thermal contact resistance at each pair of coincident nodes on the interface are calculated.
机译:本文提出了一种从计算角度估算空间变化的热接触电阻的方法。该方法首先沿材料界面拆分计算域,以产生两个边界逆导热问题。从分析溶液计算出的温度仅在每种材料的三个内部点指定,而不是在实验中提供的温度。在求解过程中,许多由沿界面指定的修改三次样条构造的方程式被合并到有限元方程式中。从分别求解的两个有限元解中提取温度和传热速率后,计算界面上每对重合节点的热接触电阻。

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