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The role of tail resonance in thrust production and wake formation

机译:尾部共振在推力产生和尾流形成中的作用

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A robotic lamprey with a flexible tail is used to investigate the influence of resonance on the wake structure and thrust production during anguilliform swimming, based on the silver lamprey, Ichthyomyzon unicuspis. A programmable microcomputer actuates 11 servomotors that produce a traveling wave along the length of the lamprey body. The shape of the tail is taken from a CT scan of the silver lamprey. The flexible tail is constructed of PVC gel. PIV measurements taken with the tail flapping at its resonant frequency and at twice this value show that resonance greatly enhances the coherence of the wake structures. Momentum balance calculations reveal that at resonance the tail is producing significantly more thrust-there is a 96% increase. In both cases, the main wake structure is a pair of vortices shed each half cycle (a 2P wake structure). At resonance these pairs are clearly defined and appear in a reproducible location. However, at twice the resonant frequency, the main vortices are composed of several smaller vortical structures. The vortices in the resonant wake retain coherence further downstream than the non-resonant wake structures.
机译:基于银七角鳗(Ichthyomyzon unicuspis),一种具有柔性尾巴的七爪鳗被用来研究共振对鳗鱼游泳过程中尾流结构和推力产生的影响。可编程的微型计算机驱动11个伺服电动机,这些电动机沿油烟主体的长度产生行波。尾巴的形状取自银色七lamp鳗的CT扫描。柔性尾部由PVC凝胶制成。用尾巴拍打以其共振频率和此值的两倍进行的PIV测量表明,共振极大地增强了尾波结构的相干性。动量平衡计算表明,在共振时,尾巴产生的推力明显更大-增加了96%。在这两种情况下,主要的尾流结构都是每半个周期散发出的一对涡流(2P尾流结构)。在共振时,这些对被明确定义并出现在可重复的位置。但是,在两倍的共振频率下,主旋涡由几个较小的旋涡结构组成。共振尾流中的涡流比非共振尾流结构在更下游处保持相干性。

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