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Discrete Adjoint Approach for Modeling Unsteady Aerodynamic Design Sensitivities

机译:离散伴随方法用于非定常空气动力学设计灵敏度建模

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摘要

A discrete adjoint approach is presented for computing steady and unsteady aerodynamic design sensitivities for compressible viscous flows about airfoil configurations. The nominal flow solver method is based on a harmonic balance solution technique, which is capable of modeling both steady and nonlinear periodic unsteady flows. The computer code for the discrete adjoint solver, which is derived from the nominal harmonic balance solver, has been generated with the aid of the advanced automatic differentiation software tool known as TAF (Transformation of Algorithms in FORTRAN).
机译:提出了一种离散的伴随方法,用于计算机翼外形周围可压缩粘性流的稳态和非稳态气动设计灵敏度。标称流量求解器方法基于谐波平衡求解技术,该技术能够对稳态和非线性周期非稳态流进行建模。从标称谐波平衡求解器派生的离散伴随求解器的计算机代码是借助于称为TAF(FORTRAN中的算法转换)的高级自动微分软件工具生成的。

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