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Optimization of Flapping Motion Parameters for Two Airfoils in a Biplane Configuration

机译:双翼飞机构型中两个机翼拍打运动参数的优化

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Flapping motion parameters of airfoils in a biplane configuration are optimized for maximum thrust and/or propulsive efficiency. Unsteady, viscous flowfields over airfoils flapping in a combined plunge and pitch are computed with a parallel flow solver on moving and deforming overset grids. The amplitudes of the sinusoidal pitch and plunge motions and the phase shift between them are optimized for a range of flapping frequencies. A gradient-based optimization algorithm is implemented in a parallel computing environment. The deforming overset grids employed remove the restriction on the flapping motion of airfoils, and improve the optimization results obtained earlier. In the Strouhal number range 0.17 < Sr < 0.25, an airfoil in a biplane configuration produces more thrust than a single airfoil. Yet, at a higher Strouhal number, the airfoil in a biplane configuration produced less thrust at a significantly lower efficiency than a single flapping airfoil.
机译:优化双翼飞机机翼的拍打运动参数,以获得最大推力和/或推进效率。使用平行流求解器在移动和变形的超额网格上计算了翼型和俯仰相结合的翼型上不稳定的粘性流场。正弦俯仰和跳入运动的幅度以及它们之间的相移针对一系列拍动频率进行了优化。在并行计算环境中实现了基于梯度的优化算法。所采用的变形过盈格栅消除了对翼型扑动运动的限制,并改善了较早获得的优化结果。在斯特劳哈尔数范围0.17

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