首页> 美国卫生研究院文献>Philosophical Transactions of the Royal Society B: Biological Sciences >How to perform measurements in a hovering animals wake: physical modelling of the vortex wake of the hawkmoth Manduca sexta.
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How to perform measurements in a hovering animals wake: physical modelling of the vortex wake of the hawkmoth Manduca sexta.

机译:如何在徘徊的动物尾巴中进行测量:鹰蛾Manduca sexta涡旋尾流的物理建模。

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摘要

The vortex wake structure of the hawkmoth, Manduca sexta, was investigated using a vortex ring generator. Based on existing kinematic and morphological data, a piston and tube apparatus was constructed to produce circular vortex rings with the same size and disc loading as a hovering hawkmoth. Results show that the artificial rings were initially laminar, but developed turbulence owing to azimuthal wave instability. The initial impulse and circulation were accurately estimated for laminar rings using particle image velocimetry; after the transition to turbulence, initial circulation was generally underestimated. The underestimate for turbulent rings can be corrected if the transition time and velocity profile are accurately known, but this correction will not be feasible for experiments on real animals. It is therefore crucial that the circulation and impulse be estimated while the wake vortices are still laminar. The scaling of the ring Reynolds number suggests that flying animals of about the size of hawkmoths may be the largest animals whose wakes stay laminar for long enough to perform such measurements during hovering. Thus, at low advance ratios, they may be the largest animals for which wake circulation and impulse can be accurately measured.
机译:使用旋涡环发生器研究了鹰蛾(Sandta sexta)的旋涡尾迹结构。基于现有的运动学和形态学数据,构造了一种活塞和管装置,以产生尺寸和盘载荷与盘旋鹰蛾相同的圆形涡流环。结果表明,人造环最初是层状的,但由于方位波的不稳定性而发展成湍流。使用粒子图像测速仪准确地估计了层环的初始冲量和循环;过渡到湍流后,最初的循环通常被低估了。如果准确地知道了过渡时间和速度分布,则可以纠正湍流环的低估,但是这种校正对于实际动物的实验是不可行的。因此,至关重要的是,在尾流涡流仍为层流状态时估算循环和脉冲。雷诺环数的缩放表明,大约有鹰蛾大小的飞行动物可能是最大的动物,它们的尾流保持层流足够长的时间以在悬停期间执行此类测量。因此,在低前进比率下,它们可能是最大的动物,可以准确地测量其尾流循环和冲动。

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