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Numerical experiments on flapping foils mimicking fish-like locomotion

机译:仿鱼运动皮瓣的数值试验

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The results of numerical experiments aimed at investigating the topology of the vortex structures shed by an oscillating foil of finite span are described. The motion of the foil and its geometry are chosen to mimic the tail of a fish using the carangiform swimming. The numerical results have been compared with the flow visualizations of Freymuth [J. Fluids Eng. 111, 217 (1989)] and those of von Ellenrieder [J. Fluid Mech.490, 129 (2003)]. The results show that a vortex ring is shed by the oscillating foil every half a cycle. The dynamics of the vortex rings depends on the Strouhal number St. For relatively small values of St, the interaction between adjacent rings is weak and they are mainly convected downstream by the free stream. On the other hand, for relatively large values of St, a strong interaction among adjacent rings takes place and the present results suggest the existence of reconnection phenomena, which create pairs of longitudinal counter-rotating vortices. (c) 2005 American Institute of Physics.
机译:描述了旨在研究由有限跨度的振荡箔散发的涡旋结构的拓扑结构的数值实验的结果。选择箔的运动及其几何形状,以使用香兰格状游泳来模仿鱼的尾巴。数值结果已经与Freymuth的流动可视化进行了比较[J.流体工程。 111,217(1989)]和冯·埃伦瑞德(von Ellenrieder)的那些[J. Fluid Mech.490,129(2003)。结果表明,振荡箔每半个周期会掉出一个涡流环。涡流环的动力学取决于Strouhal数St。对于较小的St值,相邻环之间的相互作用较弱,并且它们主要由自由流向下游对流。另一方面,对于较大的St值,相邻环之间会发生强相互作用,并且当前结果表明存在重新连接现象,这会产生成对的纵向反向旋转涡流。 (c)2005年美国物理研究所。

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