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Wing Kinematics of Long Eared Owl and Sparrow Hawk in Flapping Flight

机译:长耳猫头鹰和麻雀鹰的翼运动学在拍打飞行中

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Many species of owl has ability of fly silently. To explore the mechanism of owl's silent flight, the kinematic character of the silent flight owl have been studied preliminarily on 3D motion capture technology. The paper has compared the flight motion between the long eared owl(Asio otus) and sparrow hawk(Accipiter nisus). According to the kinematic data, the flight trajectory, flapping frequency, flapping cycle, wrist angle, upstroke and downstroke percentage of cycle were computed and analyzed. The results show that wing tip, wrist and primary feather P10 of long eared owl and the eagle owl have obvious trajectory in flapping flight. Especially the wing tip trajectory in upstroke shows double"8"type. However, the wing tip trajectory in upstroke of sparrow hawk shows single"8"type. The wrist angle of silent owl keeps in downstroke and decreases in upstroke. But the wrist angle of sparrow hawk has increased first and then kept in downstroke, and the angle has begun decrease in upstroke. The above results show the difference of wing kinematics between silent owl and sparrow hawk, and will be useful for bionic design and silent fly technology.
机译:许多物种的猫头鹰有能力默默地飞行。为了探讨猫头鹰沉默飞行的机制,静音飞行猫头鹰的运动特性已经初步研究了3D运动捕捉技术。该论文已经比较了长耳猫头鹰(Asio Otus)和麻雀鹰(Accipiter Nisus)之间的飞行运动。根据运动学数据,计算和分析了循环的飞行轨迹,拍摄频率,拍打周期,腕角,上行程和下调百分比。结果表明,长耳猫头鹰和鹰猫头鹰的翼尖,手腕和主要羽毛P10在拍打飞行中具有明显的轨迹。特别是上行程中的翼尖轨迹显示双“8”类型。然而,Sparrow Hawk举射中的翼尖轨迹显示单个“8”型。沉默猫头鹰的腕角在下午持续下午减少。但是,麻雀鹰的腕角首先增加,然后在下行中保持,并且该角度已经开始减少了上行程。上述结果显示了沉默猫头鹰和麻雀鹰之间的翼运动学的差异,并将对仿生设计和沉默的飞行技术有用。

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