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Time-varying span efficiency through the wingbeat of desert locusts

机译:穿越沙漠蝗虫时变的跨度效率

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摘要

The flight performance of animals depends greatly on the efficacy with which they generate aerodynamic forces. Accordingly, maximum range, load-lifting capacity and peak accelerations during manoeuvres are all constrained by the efficiency of momentum transfer to the wake. Here, we use high-speed particle image velocimetry (1 kHz) to record flow velocities in the near wake of desert locusts (Schistocerca gregaria, Forskål). We use the measured flow fields to calculate time-varying span efficiency throughout the wing stroke cycle. The locusts are found to operate at a maximum span efficiency of 79 per cent, typically at a plateau of about 60 per cent for the majority of the downstroke, but at lower values during the upstroke. Moreover, the calculated span efficiencies are highest when the largest lift forces are being generated (90% of the total lift is generated during the plateau of span efficiency) suggesting that the combination of wing kinematics and morphology in locust flight perform most efficiently when doing the most work.
机译:动物的飞行性能在很大程度上取决于它们产生空气动力的功效。因此,机动过程中的最大范围,起重能力和峰值加速度都受到动量传递到尾流的效率的限制。在这里,我们使用高速粒子图像测速仪(1 kHz)记录沙漠蝗虫(Schistocerca gregaria,Forskål)的近尾处的流速。我们使用测得的流场来计算整个机翼冲程周期的时变跨度效率。人们发现蝗虫的最大跨度效率为79%,在大部分下行冲程中,通常在约60%的平稳期运行,但在上行冲程中的运行效率较低。此外,当产生最大升力时,计算出的跨度效率最高(总升力的90%是在跨度效率的稳定期产生的),这表明蝗虫飞行中机翼运动学和形态学的结合在执行时最有效。大多数工作。

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