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High-Fidelity Computations for Flexible Micro Air Vehicle Applications

机译:灵活的微型飞行器应用的高保真计算

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Implicit large-eddy simulation (ILES) computations have been performed for canonical problems associated with flexible, flapping-wing micro air vehicles (MAVs). This computationally-intensive approach, which is able to directly model laminar/transitional/turbulent flow fields, requires the use of the best high performance computational platforms available. Results for the direct numerical simulation of the deep dynamic stall phenomenon over a rigid plunging airfoil section at transitional Reynolds numbers relevant to MAV systems are presented. Next, computations for two different flexible-wing geometries, a membrane-wing section and a three-dimensional, flexible-wing with an NACA0012 cross-section, are discussed. Finally, to investigate the relevant physics associated with a perching maneuver, computational results for a pitch, hold and return motion are examined. All computed results show good correlation with corresponding experimental measurements.
机译:对于与柔性拍打翼微型飞机(MAV)相关的规范问题,已经进行了隐式大涡模拟(ILES)计算。这种能够直接对层流/过渡/湍流场进行建模的计算密集型方法,需要使用现有的最佳高性能计算平台。给出了在与MAV系统有关的过渡雷诺数下,刚性插入翼型截面上的深部动态失速现象的直接数值模拟结果。接下来,讨论了两种不同的柔性翼几何形状,膜翼截面和具有NACA0012横截面的三维柔性翼的计算。最后,为了研究与栖息动作有关的相关物理,检查了俯仰,保持和返回运动的计算结果。所有计算结果均与相应的实验测量值显示出良好的相关性。

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