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An inverse geometry problem in determining the interfacial surfaces of a three layers structure based on the desired system heat flux

机译:根据所需的系统热通量确定三层结构的界面时的几何逆问题

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An optimum shape design problem in simultaneously designing the shapes of interfacial surfaces among three conductive bodies in a three-dimensional domain, based on the desired system heat flux and domain volume, is examined in the present work. The Levenberg-Marquardt method (LMM), B-Spline surface generation technique together with the commercial code CFD-ACE+ were utilized to solve the inverse geometry problem. The validity of this algorithm is examined using the numerical experiments. Different combinations of conductive bodies and desired system heat fluxes were given in the numerical test cases to justify the validity of the algorithm in solving the three-dimensional inverse design problem. Finally, it is concluded that when the interfacial surfaces are well designed, the effective system heat flux can be increased significantly.
机译:在当前工作中,研究了在期望的系统热通量和畴体积的基础上同时设计三维域中的三个导电体之间的界面表面形状的最佳形状设计问题。利用Levenberg-Marquardt方法(LMM),B样条曲面生成技术以及商业代码CFD-ACE +来解决反几何问题。通过数值实验验证了该算法的有效性。在数值测试案例中,给出了导体和所需系统热通量的不同组合,以证明该算法在解决三维逆设计问题中的有效性。最后,得出的结论是,当界面设计合理时,有效的系统热通量可以显着增加。

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