首页> 外文会议>ASME Fluids Engineering Division Meeting >THE EFFECTS OF WAKES ON AERODYNAMIC CHARACTERISTICS OF FLAPPING WINGS IN CLAP-AND-FLING MOTION AT RE OF ~10~4
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THE EFFECTS OF WAKES ON AERODYNAMIC CHARACTERISTICS OF FLAPPING WINGS IN CLAP-AND-FLING MOTION AT RE OF ~10~4

机译:唤醒对拍摄运动中拍摄翅膀的空气动力学特性的影响〜10〜4的跳动运动

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In this paper, aerodynamic characteristics of two flapping wings in clap-and-fling motion at Re of ~10~4, which corresponds to the flight regime of flapping-wing micro air vehicles, was investigated. The test employing dynamically scaled-up robotic arms installed on a water tank revealed that the wingbeat motion at such high Re induced the fully developed wake within two wingbeat cycles. This wake widely influenced the lift production covering the entire wingbeat period; the wings earned the additional lift during the entire downstroke, and lost the lift during the upstroke. Chordwise cross-sectional DPIV showed the massive downwash with enlarged tip vortices, when the wake was fully developed. The wake blew down the headwind and reduced the effective angles of attack. In the case of the clap-and-fling motion, the wake was leaned toward the dorsal part, in which the wings created the clap-and-fling motion, causing the global fluctuation of the aerodynamic force production.
机译:本文研究了〜10〜4的拍摄运动中两个拍打翅膀的空气动力学特性,对应于拍翼微空气车辆的飞行制度。使用安装在水箱上的动态缩放机器人臂的测试显示,在这种高处重新诱导了Wingbeat运动在两个翼展周期内完全发育的尾迹。这种唤醒人口普遍影响了覆盖整个翼展时期的提升产量;翅膀在整个下行程中获得额外的升力,并在上行程中失去了升力。曲线横截面dpiv显示出瓶子扭转的大规模洗涤,当瓶颈完全开发时。唤醒击中逆风并降低了攻击的有效角度。在拍摄和漂浮运动的情况下,唤醒朝向背部倾斜,其中翼产生了拍摄和漂浮运动,从而导致空气动力产生的全局波动。

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