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The influence of the wake of a flapping wing on the production of aerodynamic forces

机译:襟翼的尾流对空气动力产生的影响

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The effect of the wake of previous strokes on the aerodynamic forces of a flapping model insect wing is studied using the method of computational fluid dynamics. The wake effect is isolated by comparing the forces and flows of the starting stroke (when the wake has not developed) with those of a later stroke (when the wake has developed). The following has been shown. (1) The wake effect may increase or decrease the lift and drag at the beginning of a half-stroke (downstroke or upstroke), depending on the wing kinematics at stroke reversal. The reason for this is that at the beginning of the half-stroke, the wing "impinges" on the spanwise vorticity generated by the wing during stroke reversal and the distribution of the vorticity is sensitive to the wing kinematics at stroke reversal. (2) The wake effect decreases the lift and increases the drag in the rest part of the half-stroke. This is because the wing moves in a downwash field induced by previous half-stroke's starting vortex, tip vortices and attached leading edge vortex (these vortices form a downwash producing vortex ring). (3) The wake effect decreases the mean lift by 6%-18% (depending on wing kinematics at stroke reversal) and slightly increases the mean drag. Therefore, it is detrimental to the aerodynamic performance of the flapping wing.
机译:使用计算流体动力学方法研究了前次冲程唤醒对拍打模型昆虫机翼的空气动力的影响。通过比较起始冲程(未产生尾流)和以后冲程(产生尾流)的力和流量,可以隔离唤醒效果。显示了以下内容。 (1)在半冲程开始时(下冲程或上冲程),尾流效应可能会增加或减少升力和阻力,具体取决于冲程反转时的机翼运动学。这样做的原因是,在半冲程开始时,机翼“撞击”在机翼反转期间机翼所产生的翼展方向涡旋上,涡旋的分布对机翼反转时的机翼运动学敏感。 (2)尾流效应会降低升程,并增加半冲程其余部分的阻力。这是因为机翼在先前的半冲程的起始涡流,尖端涡流和附着的前缘涡流(这些涡流形成了产生下冲的涡流环)的诱导下冲场中运动。 (3)尾流效应使平均升力降低6%-18%(取决于中风反转时的机翼运动学),并略微增加了平均阻力。因此,这对襟翼的空气动力性能有害。

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