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Application of MFS for determination of effective thermal conductivity of unidirectional composites with linearly temperature dependent conductivity of constituents

机译:MFS在确定成分的线性温度依赖性的单向复合材料的有效导热系数中的应用

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摘要

In this paper the problem of the effective conductivity in composite material is considered. It is assumed that the thermal conductivity coefficients of both the matrix and fibres materials are temperature-dependent. It yields the temperature-dependency of the effective thermal conductivity. To determine the effective thermal conductivity a unit-cell approach is used, i.e. heat flow in repeated element, which consists of one fibre in the matrix, is considered. It leads to 2-D nonlinear boundary value problems in matrix and fibre regions. In the paper, it is proposed to solve the given nonlinear boundary value problem by Picard iteration. For every iteration step, the linear boundary value problem with two uncoupled linear partially differential equations and coupled boundary conditions is solved. The method of fundamental solution, supported by radial basis functions approximation, is imple mented to obtain the required solutions. The numerical experiment has been performed. The results of the experiment and some conclusions are included as well.
机译:本文考虑了复合材料中有效电导率的问题。假设基体材料和纤维材料的导热系数均与温度有关。它产生了有效导热率的温度依赖性。为了确定有效的热导率,使用了单胞方法,即考虑了在重复元素中的热流,该元素由基质中的一根纤维组成。这会导致基体和纤维区域的二维非线性边界值问题。本文提出了通过皮卡德迭代解决给定的非线性边值问题。对于每个迭代步骤,求解带有两个解耦线性偏微分方程和耦合边界条件的线性边界值问题。通过径向基函数逼近来支持基本解法,以实现所需解。数值实验已经完成。实验结果和一些结论也包括在内。

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