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Robust aerodynamic optimization of morphing airfoils for helicopter rotor blades

机译:直升机转子叶片变形翼型的鲁棒空气动力学优化

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This paper presents a robust aerodynamic optimization framework for the design of a morphing airfoil for helicopter rotor blades. The adoption of a conformable geometry is considered to cope with the variable flow conditions encountered in forward flight with the objective of increasing the aerodynamic performance on the advancing and retreating sides of the rotor. The optimization framework presented in this work includes a robustness measure of the optimal design, based on the computation of low-order statistics of the fitness function when variations in the operating conditions (arising not only from the assumptions introduced in the models employed in the design stage, but also from the numerous sources of uncertainty present in the realistic world) are considered.
机译:本文提出了一种坚固的空气动力学优化框架,用于设计直升机转子叶片的变形翼型。采用可适形几何形状被认为应对前向飞行中遇到的可变流动条件,其目的是提高转子的前进和退回侧的空气动力学性能。本工作中提供的优化框架包括最佳设计的稳健性测量,基于操作条件的变化(不仅在设计中使用的模型中推出的假设而产生的假设而产生的健身功能的低阶统计数据阶段,但也来自现实世界中存在的许多不确定性来源)。

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