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A shape design problem in determining the interfacial surface of two bodies based on the desired system heat flux

机译:根据所需的系统热通量确定两个物体的界面时的形状设计问题

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A shape design problem (or inverse geometry problem) in determining the geometry of interfacial surface between two conductive bodies in a three-dimensional multiple region domains, based on the desired system heat flux and domain volume, is examined in this study. The design algorithm utilized the Leven-berg-Marquardt method (LMM), B-spline surface generation and the commercial software CFD-ACE+. The validity of this shape design analysis is examined using the numerical experiments. Different desired system heat fluxes are considered in the numerical test cases to justify the validity of the present algorithm in solving the three-dimensional shape design problems. Finally, the results show that for the two different cases considered in this work, the maximum increasing in the system heat flux is obtained as 11.3% and 14.1%, respectively. It is also concluded that when the boundary control points of interfacial surface are free to move, maximum system heat flux can be obtained by the present algorithm since it has more degree of freedom in describing the interfacial surface.
机译:在这项研究中,研究了一种形状设计问题(或逆几何问题),该问题基于所需的系统热通量和畴体积确定了三维多个区域畴中两个导电体之间的界面几何形状。设计算法利用了Levenberg-Marquardt方法(LMM),B样条曲面生成和商业软件CFD-ACE +。使用数值实验检查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期望系统热通量,以证明本算法在解决三维形状设计问题中的有效性。最后,结果表明,对于本工作中考虑的两种不同情况,系统热通量的最大增加分别为11.3%和14.1%。还可以得出结论,当界面的边界控制点自由移动时,由于本算法在描述界面时具有更大的自由度,因此可以通过本算法获得最大的系统热通量。

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