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Transonic airfoil design and optimisation by using vibrational genetic algorithm

机译:基于振动遗传算法的跨音速翼型设计与优化

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摘要

In this study, the power of vibrational genetic algorithm (VGA) for transonic airfoil design and optimisation problems, which are generally characterized by multi-model topology in the design parameter space, has been introduced. This type of problem is characterized by search and computational time to achieve satisfying solutions. In order to obtain more robust and faster algorithm, vibration concept, our earlier study, is further developed. This developed VGA is coupled with a full potential flow-field solver for inverse design and airfoil optimisation problem in transonic case. The performance of this implemented strategy is compared with that offered by a classical or more commonly used genetic algorithm.
机译:在这项研究中,介绍了振动遗传算法(VGA)在设计参数空间中通常以多模型拓扑为特征的跨音速翼型设计和优化问题的能力。这种类型的问题的特征在于搜索和计算时间,以实现令人满意的解决方案。为了获得更健壮和更快的算法,我们更早地研究了振动概念。这种开发的VGA结合了全电位流场求解器,可用于跨音速情况下的逆向设计和机翼优化问题。将这种实施策略的性能与经典或更常用的遗传算法所提供的性能进行比较。

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