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Experimental Study on Forewing–Hindwing Phasing in Hovering and Forward Flapping Flight

机译:悬停和前襟翼飞行中前-后翼相位的实验研究

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摘要

The effects of the phase difference between fore- and hindwings are experimentally investigated on the aerodynamic force, aerodynamic efficiency, and longitudinal control forces for tandem flapping wings in hovering and forward flight. The aerodynamic force and power are measured using a dynamically scaled mechanical model in a water tunnel at a Reynolds number of 7660-11,400. The experimental results indicate that a tandem configuration, except in-phase motion, is detrimental to the generation of vertical and horizontal aerodynamic forces in hovering and slow forward flight; whereas the vertical force is enhanced in out-of-phase motion when the hindwing leads the forewing in faster forward flight. In-phase motion has the largest aerodynamic efficiency of all the phase differences in hovering and forward flight, which does not correspond to the phase difference that dragonflies use in hovering and forward flight. In contrast, a shift in the phase difference in the range of 45-180 deg (hindwing leads forewing) does not change the total vertical or horizontal force but largely and monotonically changes the pitching moment about the body caused by the force difference between the fore- and hindwings in hovering and forward flight, which corresponds to the fact that dragonflies use antiphase motion in hovering and out-of-phase motion of 50-130 deg in forward flight.
机译:实验研究了前翼和后翼之间的相位差对悬停和向前飞行中串联襟翼的空气动力,空气动力效率和纵向控制力的影响。使用动态缩放的机械模型在水隧道中以雷诺数为7660-11,400来测量空气动力和动力。实验结果表明,除同相运动外,串联配置不利于在悬停和缓慢向前飞行中产生垂直和水平空气动力。相反,当后机翼以更快的速度向前飞行时,垂直力会以异相运动的方式增强。在悬停和向前飞行的所有相位差中,同相运动具有最大的空气动力学效率,这与蜻蜓在悬停和向前飞行中使用的相位差不对应。相比之下,相差在45-180度范围内的变化(后翼向前弯曲)不会改变总的垂直或水平力,而是会大而单调地改变由前掌之间的力差引起的围绕身体的俯仰力矩-以及悬停和向前飞行中的后翅,这对应于以下事实:蜻蜓在悬停中使用反相运动,而在向前飞行中使用50-130度的异相运动。

著录项

  • 来源
    《AIAA Journal》 |2019年第9期|3779-3790|共12页
  • 作者单位

    Kyushu Univ Dept Aeronaut & Astronaut Fukuoka Fukuoka 8190395 Japan;

    Nippon Bunri Univ Dept Aerosp Engn Oita 8700397 Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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