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Investigation of the Effectiveness of Selected Shape Parameterization Techniques for Robust Aerodynamic Optimization

机译:选定形状参数化技术对鲁棒空气动力学优化的有效性研究

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The objective of this paper is to investigate the effectiveness of two shape parameterization techniques for robust aerodynamic shape optimization of airfoils in transonic, viscous flow under the variation of Mach number defined as an uncertain variable. The effectiveness of the shape parameterization techniques is evaluated in terms of the computational cost of optimization and the performance increase achieved with the final design. In this study, Hicks-Henne and B-spline shape parameterization techniques are studied. The same shape parameterization techniques are also utilized for deterministic shape optimization and the results are compared to the observations made for the robust design case. For each method, the effect of the number of design variables and their distribution (cosine or uniform) over the geometry on the effectiveness of deterministic and robust optimization are studied. The results of the current study show that the number of design variables and their distributions can significantly impact the computational cost and the aerodynamic performance metrics in both robust and deterministic designs. The improvement of the robustness of the final design obtained with stochastic optimization approach is demonstrated over the Mach number range considered as the uncertain operating condition for the aerodynamic optimization problem studied in this paper.
机译:本文的目的是研究在马赫数定义为不确定变量的情况下,两种形状参数化技术对跨音速,粘性流动中的机翼鲁棒气动形状优化的有效性。形状参数化技术的有效性是根据优化的计算成本和最终设计所实现的性能提升来评估的。在这项研究中,对Hicks-Henne和B样条曲线形状参数化技术进行了研究。相同的形状参数化技术也用于确定性形状优化,并将结果与​​针对稳健设计案例的观察结果进行比较。对于每种方法,研究了设计变量的数量及其在几何图形上的分布(余弦或均匀)对确定性和鲁棒性优化效果的影响。当前的研究结果表明,设计变量的数量及其分布会显着影响鲁棒性和确定性设计的计算成本和空气动力学性能指标。在被视为本文研究的空气动力学优化问题的不确定运行条件的马赫数范围内,证明了通过随机优化方法获得的最终设计的鲁棒性的提高。

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