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The aerodynamics of free-flight maneuvers in Drosophila

机译:果蝇自由飞行动作的空气动力学

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Using three-dimensional infrared high-speed video, we captured the wing and body kinematics of free-flying fruitflies as they performed rapid flight maneuvers. We then "replayed" the wing kinematics on a dynamically scaled robotic model to measure the aerodynamic forces produced by the wings. The results show that fly generates rapid turns with surprisingly subtle modifications in wing motion, which nonetheless generate sufficient torque for the fly to rotate its body through each turn. The magnitude and time course of the torque and body motion during rapid turns indicate that inertia, not friction, dominates the flight dynamics of insects. [References: 11]
机译:使用三维红外高速视频,我们捕获了自由飞行的果蝇在执行快速飞行机动时的机翼和身体运动学。然后,我们在动态缩放的机器人模型上“重播”机翼运动学,以测量机翼产生的空气动力。结果表明,苍蝇产生了快速的转弯,机翼运动出奇地微妙的改变,尽管如此,苍蝇仍产生了足够的扭矩,使苍蝇在每次转弯时都旋转其身体。急转弯时扭矩和人体运动的大小和时间过程表明,惯性而不是摩擦主导了昆虫的飞行动力学。 [参考:11]

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