Abstract

Thermal contact resistance(TCR) is one of the important parameters in heat transfer problems of engineering, and it is necessary to estimate the value of TCR effectively in many engineering fields. Considering the limitation of current estimation methods of TCR such as only focusing on one-dimensional thermal conduction, getting a single value of TCR merely, and the temperature measuring points only being placed in temperature gradient direction of mediums, boundary element method(BEM) and conjugate gradient method are combined to estimate the TCR in planar mediums. The value of TCR in relation to the position of contact interface line is estimated with this method, and the positions of temperature measuring points can be selected randomly because of the characteristic of BEM that there is no necessity to discrete the inner area and it is sufficient to discrete the boundary. The analysis of calculation examples base on heat transfer model of planar medium demonstrates that:this method can estimate the TCR effectively, but the ill-posedness is also existed in this method which is one of the inverse problems, and the calculation error of TCR is increased with the distance from temperature measuring points to contact interface, the estimation precision and stability can be improved after optimization with least square method.

Highlights

  • necessary to estimate the value of TCR

  • the temperature measuring points only being placed in temperature gradient direc⁃ tion of mediums

  • The value of TCR in relation to the position of contact interface line is estimated with this method

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Summary

Introduction

分别为k1 和 k2 的 2 块材料在 y = l 处接触;在接触界 面附近选取一系列温度测点并测取温度值;大多数 研究忽略了接触热阻在接触区域内沿接触面空间的 变化,本文假设接触热阻在二维结构中沿接触线位 置变化,记为 R(x)。 建立稳态热传导控制方程为: Ti(x) 为 y = Li 处的温度函数值,可由上述方程组 解出。 式中, Tkl +1( x) 为第 k + 1 次迭代所得的界面温度;ε 式中, Tkl +1( x) 与(7) 式中含义相同;βk ,pk 分别为第 界条件;(12) 式表示上、下表面( y = L、y = 0 处) 的

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