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首页> 外文期刊>Journal of numerical mathematics >Simultaneous pseudo-time stepping for 3D aerodynamic shape optimization
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Simultaneous pseudo-time stepping for 3D aerodynamic shape optimization

机译:同时进行伪时间步进实现3D空气动力学形状优化

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摘要

This paper presents a numerical method for aerodynamic shape optimization problems with state constraint. It uses a simultaneous semi-iterative technique to solve the equations arising from the first order necessary optimality conditions. Although there is no theoretical proof of convergence of this algorithm so far, in our numerical experiments the method converges without additional globalization in the design space. A reduced SQP method based preconditioner is used for convergence acceleration. Design examples of drag reduction with constant lift for wing and body of a Supersonic Commercial Transport (SCT) aircraft are included. The overall cost of computation is about 8 forward simulation runs.
机译:本文提出了一种具有状态约束的空气动力学形状优化问题的数值方法。它使用同时半迭代技术来求解由一阶必要最优性条件引起的方程。尽管到目前为止还没有理论证明该算法的收敛性,但是在我们的数值实验中,该方法收敛了,而没有在设计空间中进行额外的全球化。基于简化SQP方法的预处理器用于收敛加速。包括超音速商业运输(SCT)飞机机翼和机体恒定升力减阻的设计示例。计算的总成本约为8个正向仿真运行。

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