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A Coupled-Adjoint Sensitivity Analysis Method for High-Fidelity Aero-Structural Design

机译:高保真航空结构设计的耦合伴随灵敏度分析方法

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摘要

This paper presents an adjoint method for sensitivity analysis that is used in an aero-structural aircraft design framework. The aero-structural analysis uses high-fidelity models of both the aerodynamics and the structures. Aero-structural sensitivities are computed using a coupled-adjoint approach that is based on previously developed single discipline sensitivity analysis. Alternative strategies for coupled sensitivity analysis are also discussed. The aircraft geometry and a structure of fixed topology are parameterized using a large number of design variables. The aero-structural sensitivities of aerodynamic and structural functions with respect to these design variables are computed and compared with results given by the complex-step derivative approximation. The coupled-adjoint procedure is shown to yield very accurate sensitivities and to be computationally efficient, making high-fidelity aero-structural design feasible for problems with thousands of design variables.
机译:本文提出了一种用于航空结构飞机设计框架的灵敏度分析的辅助方法。空气结构分析使用空气动力学和结构的高保真模型。使用基于先前开发的单学科敏感性分析的耦合伴随方法来计算航空结构敏感性。还讨论了耦合灵敏度分析的替代策略。使用大量设计变量对飞机的几何形状和固定拓扑结构进行参数化。计算出空气动力学和结构功能对这些设计变量的空气结构敏感性,并将其与复步导数近似法给出的结果进行比较。结果表明,耦合伴随程序可以产生非常精确的灵敏度,并且计算效率高,这使得高保真航空结构设计对于具有数千个设计变量的问题是可行的。

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