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An inverse problem in determining the optimal filler shape of composite materials for maximum effective thermal conductivity

机译:确定复合材料的最佳填料形状以实现最大有效热导率的反问题

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摘要

An inverse problem in determining the optimal geometry of filler shape between two conductive bodies in a two-dimensional multiple region domains, based on the desired thermal conductivity ratio and content of filler, is examined in the present study. The Levenberg-Marquardt method (LMM), B-spline curve generation technique and commercial software CFD-ACE+ are utilized in this inverse design algorithm. The validity of this shape design analysis is examined using the numerical experiments, different filler content and conductivity are considered in the numerical test cases to justify the validity of this study. The estimated results in the present work are then compared with the existing filler shapes designed by Zhang et al. (2012). It is found that (ⅰ) by fixing the filler conductivity, the effective thermal conductivity can be increased from 2.3% to 42.8% depending on different content of filler and (ⅱ) by fixing the filler content, the effective thermal conductivity can be increased from 1.8% to 9.1% depending on different filler conductivity. Moreover, it is also concluded that the optimal fillers are not of "I" shape, which was suggested by Zhang et al. (2012), instead, they are in a family of "I-like" shape with a smooth nozzle-diffuser shape in the central region which can accelerate the rate of heat dissipation and thus improve the effective thermal conductivity.
机译:在本研究中,研究了根据所需的导热率和填料含量确定二维多区域域中两个导电体之间的最佳填料形状几何形状的逆问题。该逆设计算法采用了Levenberg-Marquardt方法(LMM),B样条曲线生成技术和商用软件CFD-ACE +。使用数值实验检验了这种形状设计分析的有效性,在数值测试案例中考虑了不同的填料含量和电导率,以证明这项研究的合理性。然后将当前工作中的估计结果与Zhang等人设计的现有填料形状进行比较。 (2012)。发现(ⅰ)通过固定填充剂的传导率,取决于填充剂的不同含量,有效导热率可以从2.3%增加到42.8%,并且(ⅱ)通过固定填充剂的含量,可以将有效导热率从1.8%至9.1%,取决于不同的填料电导率。而且,还得出结论,最佳的填料不是“ I”形,这是Zhang等人提出的。 (2012年),相反,它们呈“ I型”形状,在中心区域具有平滑的喷嘴-扩散器形状,可以加快散热速度,从而提高有效的热导率。

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