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Effect of motion trajectory on the aerodynamic performance of a flapping airfoil

机译:运动轨迹对扑翼翼型空气动力学性能的影响

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In this paper, the influence of the motion trajectory on the aerodynamic performance of a flapping airfoil is numerically investigated. The airfoil synchronously performs a rotating motion (pitch), a horizontal motion (surge) and a vertical motion (plunge). The motion trajectory can be modified by changing the relative frequency of surging motion (k), the amplitude of surging motion (l(m)) and the phase difference between pitch and surge (phi). To perform the numerical simulations, a NACA0012 airfoil is employed. A low Reynolds number (Re = 500) is selected for small creatures and flapping MAVs. As compared with the traditional motion, it is observed that the figure-of-eight motion trajectory has a promotion for the thrust and propulsive efficiency, and the lift is improved when the relative surging frequency k is an odd number with the specified phase difference. In addition, the phenomenon of multiple vortices and resultant vortex capture appears when the surging motion is added, which is helpful for the improvement of thrust. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文研究了运动轨迹对扇形翼型的空气动力学性能的影响是数值研究。翼型同步地执行旋转运动(间距),水平运动(浪涌)和垂直运动(进降)。可以通过改变浪涌运动(k)的相对频率,浪涌运动的幅度(L(m))和音调(phi)之间的相位差来修改运动轨迹。为了执行数值模拟,采用NACA0012翼型。选择低雷诺数(RE = 500)用于小生物和扑振MAV。与传统运动相比,观察到八个运动轨迹具有推力和推进效率的促销,并且当相对汹涌的频率k是具有指定相位差的奇数时,提升了提升。此外,当添加浪涌运动时出现多个涡流和所得涡流捕获的现象,这有助于提高推力。 (c)2017 Elsevier Ltd.保留所有权利。

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