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Inverse analysis for transient thermal load identification and application to aerodynamic heating on atmospheric reentry capsule

机译:瞬时热负荷识别的反分析及其在大气折返舱气动加热中的应用

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A transient inverse heat conduction analysis enables the identification of the unknown boundary heat flux from finite number of temperature data obtained, e.g., in the high temperature structural tests or in the actual operation. Since the prediction of thermal load (heat flux) is difficult, the inverse analysis is expected to improve structural design of high temperature components. The present study develops a computational method of transient inverse heat conduction analysis. The developed code is applied to problems of a simple two-dimensional plate and of an atmospheric reentry capsule. Sequential Function Specification (SFS) method and Truncated Singular Value Decomposition (TSVD) are employed to improve the stability of the inverse analysis. Effects of these regularization methods are numerically discussed.
机译:瞬态逆导热分析使得能够根据例如在高温结构测试或实际操作中获得的有限数量的温度数据来识别未知的边界热通量。由于难以预测热负荷(热通量),因此可以通过反分析来改善高温部件的结构设计。本研究开发了瞬态逆热传导分析的计算方法。开发的代码适用于简单的二维板和大气折返胶囊的问题。顺序函数规范(SFS)方法和截断奇异值分解(TSVD)用于提高反分析的稳定性。数值讨论了这些正则化方法的效果。

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