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首页> 外文期刊>Philosophical transactions of the Royal Society. Mathematical, physical, and engineering sciences >In vivo structural dynamic analysis of the dragonfly wing: the effect of stigma as its modulator
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In vivo structural dynamic analysis of the dragonfly wing: the effect of stigma as its modulator

机译:蜻蜓翼的体内结构动态分析:耻辱作为调节剂的影响

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摘要

The flapping of the dragonfly forewing under in vivo condition has been analysed by image correlation technique to get an insight of its structural dynamics. The modal parameters such as flapping frequency, natural frequencies, mode shapes and modal strain have been obtained that will facilitate the biomimetic design of wings for micro air vehicles. The stigma, which is a pigmented spot at the leading edge of the wing near the tip having heavier mass, takes an active role in the real-time flapping by shaping its trajectory as eight-shaped, which enhances the drag coefficient and stroke efficiency. The extra mass on it and its removal transformed the trajectory into two different elliptical and oval shapes, respectively, which reduced the drag coefficient and stroke efficiency of the flapping wing by altering the flapping kinematics.
机译:通过图像相关技术分析了在体内条件下进行的蜻蜓前翅的拍打,以了解其结构动态的洞察力。 已经获得了诸如拍打频率,自然频率,模式形状和模态应变的模态参数,这将有助于微型空气车辆的翅膀的仿真设计。 作为具有较重质量的尖端附近的机翼前缘的着色点的柱头在实时凸起中,通过将其轨迹塑造为八个形状的实时拍打,这提高了阻力系数和行程效率。 它的额外质量及其移除分别将轨迹分别转换为两种不同的椭圆形和椭圆形状,通过改变拍打运动学来降低扇形翼的拖曳系数和行程效率。

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