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Variable Fidelity Optimization of Required Power of Rotor Blades: Investigation of Aerodynamic Models and their Application

机译:转子叶片所需功率的可变保真度优化:空气动力学模型及其应用研究

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An investigation of aerodynamic models with varying fidelity is performed with respect to the required power for different rotor blade geometries. Concluding from this investigation low, mid and high fidelity methods are selected. For hover these comprise a finite state inflow model, Euler computations on coarse meshes and highly resolved RANS computations, both with periodic boundaries. For forward flight, a prescribed wake model, single bladed Euler computations and a Chimera setup for RANS computations are selected. A comparative study between between single fidelity and variable fidelity surrogate based optimization is performed, where resource savings of up to 64.8% are seen for forward flight optimizations.
机译:针对不同转子叶片几何形状所需的功率,对保真度变化的空气动力学模型进行了研究。从这项调查中得出结论,选择了低,中和高保真度方法。对于悬停,它们包括有限状态流入模型,粗糙网格上的Euler计算和高度解析的RANS计算,两者均具有周期性边界。对于前向飞行,选择了规定的尾流模型,单叶片欧拉计算和用于RANS计算的Chimera设置。在基于单保真度和基于可变保真度代理的优化之间进行了比较研究,对于前向飞行优化,可以节省高达64.8%的资源。

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