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Effects of camber angle on aerodynamic performance of flapping-wing micro air vehicle

机译:跨越角度对拍打翼微空气气动性能的影响

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This study investigates the unsteady aerodynamic characteristics of the cambered wings of a flapping-wing micro air vehicle (FW-MAV) in hover. A three-dimensional fluid-structure interaction solver is developed for a realistic modeling of large-deforming wing structure and geometry. Cross-validation is conducted against the experimental results obtained also in the present study to establish more accurate analyses of cambered wings. An investigation is carried out on the unsteady vortex structures around the wings caused by the passive twisting motion. A parametric study is then conducted to evaluate the aerodynamic performance with respect to the camber angle at three different flapping frequencies including normal operating conditions. The camber angles producing the largest thrust and highest propulsive efficiency are estimated at each flapping frequency, and their effects on aerodynamic performance are analyzed in terms of the stroke phase. The timing and magnitude of the passive twisting motion, which are dependent on the camber angle at the operating frequency, greatly affects the unsteady vortex structure. Consequently, the camber angle designed at the operating frequency plays a key role in enhancing the aerodynamic performance of FW-MAVs. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本研究研究了悬停中扑翼微空气车辆(FW-MAV)的弧形翅膀的不稳定空气动力学特性。为大变形机翼结构和几何形状的逼真建模开发了三维流体结构相互作用求解器。对本研究中也获得的实验结果进行交叉验证,以建立更准确地分析弧形翅膀。在由被动扭转运动引起的翅膀周围的不稳定涡流结构上进行了调查。然后进行参数化研究以在包括正常操作条件的三种不同拍摄频率的三个不同拍摄频率上对倾角进行评估空气动力学性能。在每个拍打频率下估计产生最大推力和最高推进效率的偏角角,并根据行程阶段分析它们对空气动力学性能的影响。被动扭转运动的时序和大小,其取决于在工作频率下的倾角,极大地影响了不稳定的涡流结构。因此,在工作频率下设计的弯角角度在提高FW-MAVS的空气动力学性能方面起着关键作用。 (c)2020 elestvier有限公司保留所有权利。

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