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Inverse design of transonic airfoils using genetic algorithm and a new parametric shape method

机译:基于遗传算法和新参数形状方法的跨音速翼型逆设计

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摘要

The inverse design of transonic airfoils is carried out using genetic algorithm and different shape parameterization methods. A new technique for airfoil shape parameterization is presented considering the features of the transonic flow. The method is then applied to several airfoil inverse design problems with defined geometry or surface pressure distributions. The influence of parametric shape methods on the accuracy and computational cost of the design process are investigated for inviscid and viscous flow problems. The fitness function evaluation is carried out using an unstructured grid finite volume flow solver. It is shown that the new shape parameterization method is able to reduce the total computational time by about 50% in the inverse design of transonic airfoils, particularly when viscous flow calculations are concerned.
机译:使用遗传算法和不同的形状参数化方法进行跨音速翼型的逆向设计。考虑到跨音速流的特点,提出了一种新的翼型参数化技术。然后将该方法应用于具有定义的几何形状或表面压力分布的多个机翼逆设计问题。针对粘性和粘性流动问题,研究了参数形状方法对设计过程的准确性和计算成本的影响。适应度函数评估是使用非结构化网格有限体积流量求解器进行的。结果表明,在跨音速翼型的逆向设计中,特别是在考虑粘性流计算时,新的形状参数化方法能够将总计算时间减少约50%。

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