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Numerical Study on the Unsteady-Force-Generation Mechanism of Insect Flapping Motion

机译:昆虫拍打运动非定常力产生机理的数值研究

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Detailed numerical simulations are conducted to investigate aerodynamic characteristics of unsteady-force generation by a two-dimensional flapping motion under a forward-flight condition. A realistic wing trajectory called the figure-eight motion is extracted from a blowfly's tethered flight under freestream. Computed results show complex vortical flow fields that exhibit very interesting and distinctive unsteady characteristics. Lift is mainly generated during downstroke motion by a high effective angle of attack due to translational and lagging motion. On the other hand, a large amount of thrust is abruptly generated at the end of upstroke motion. Vortical structure in the wake and the pressure field shows that vortex-pairing and vortex-staying mechanisms can be presented as strong evidence for the abrupt large thrust generation, which is fundamentally different from the inverse Kantian vortex that is used to explain thrust generation by sinusoidal oscillating airfoil. Additional numerical simulations are conducted to examine the effects of motion components of figure-eight motion. From numerical results and comparisons, it is observed that wing rotational motion at the end of upstroke is crucial in generating the pairing and staying of vortices, which eventually leads to the abrupt thrust generation.
机译:进行了详细的数值模拟,以研究在前向飞行条件下通过二维拍打运动产生的非定常力的空气动力学特性。从自由流下的蝇blow系留的飞行中提取了称为“八字形运动”的逼真的机翼轨迹。计算结果表明,复杂的涡流场表现出非常有趣且独特的不稳定特征。升力主要是由于平移运动和滞后运动而在下行程运动期间由高有效攻角产生的。另一方面,在上冲程运动结束时突然产生大量推力。尾流和压力场中的涡旋结构表明,涡流配对和涡流滞留机制可以作为突然大推力生成的有力证据,这与用来解释正弦形推力的逆康德涡旋根本不同。振荡翼型。进行了附加的数值模拟,以检查八字形运动的运动分量的影响。从数值结果和比较中可以看出,机翼在上冲程结束时的旋转运动对于产生涡流的配对和停留至关重要,最终导致突然的推力产生。

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