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首页> 外文期刊>The Journal of Experimental Biology >A computational investigation of the three-dimensional unsteady aerodynamics of Drosophila hovering and maneuvering
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A computational investigation of the three-dimensional unsteady aerodynamics of Drosophila hovering and maneuvering

机译:果蝇盘旋和操纵的三维非定常空气动力学计算研究

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Three-dimensional unsteady computations of the flow past a fruit fly Drosophila under hovering and free flight conditions are computed. The kinematics of the wings and the body of the fruit fly are prescribed from experimental observations. The computed unsteady lift and thrust forces are validated with experimental results and are in excellent agreement. The unsteady aerodynamic origin of the time-varying yaw moment is identified. The differences in the kinematics between the right and the left wings show that subtle change in the stroke angle and deviation angle can result in the yaw moment for the turning maneuver. The computed yaw moment reaches a peak value at the beginning of the maneuver and remains positive throughout the remainder of the maneuver. The origin of the yaw moment is investigated by computing the center of pressures on each wing and the individual moment arms. This investigation leads to the conclusion that it is the forward force and a component of the lift force that combine to produce the turning moment while the side force alone produces the restoring torque during the maneuver. The vorticity shed from the wing's leading edge and the tips show a loop like structure that during stroke reversals pinches off into Lambda-like structures that have not been previously observed in the wakes of flapping fliers.
机译:计算了在悬停和自由飞行条件下通过果蝇果蝇的流动的三维非定常计算。机翼和果蝇身体的运动学是根据实验观察得出的。计算的非稳态升力和推力已通过实验结果验证,并且非常吻合。确定了随时间变化的偏航力矩的不稳定空气动力学起因。左右机翼之间在运动学上的差异表明,行程角和偏离角的细微变化会导致转弯机动产生偏航力矩。计算出的偏航力矩在操纵开始时达到峰值,并在操纵的其余部分保持正值。通过计算每个机翼和单个力矩臂上的压力中心来研究偏航力矩的起源。该研究得出的结论是,在操纵过程中,正向力和升力的一部分共同产生了转弯力矩,而侧向力则单独产生了恢复扭矩。机翼前缘产生的涡流和叶尖显示出类似环状的结构,在冲程反转期间会收缩成Lambda状的结构,这种结构以前在扑翼飞行后并未被观察到。

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