冯Kármán涡旋街道中作用于人工鱼的水动力实验研究

IF 0.4 Q4 Engineering
G. Toming, Lily D. Chambers, M. Kruusmaa
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引用次数: 9

摘要

本文描述了作用在冯·卡门涡街上不同大小的鱼形物体上的水动力,其中在物体的尾迹中观察到一种特定的运动模式,卡门步态。本文研究了被动鱼形体在这些水动力条件下的水动力,包括侧向力和扭矩。通过使用鱼的长度和尾迹波长的范围,实验测试了大小问题,以平衡人工鱼拦截迎面扑来的漩涡的力量,潜在地利用流动中的横向和旋转元素,可能促进生物鱼的卡门步态。为此,研究人员制造了5条模拟虹鳟鱼(Oncorhynchus mykiss)的人工鱼,将它们插入流动隧道中,同时记录了水动力和DPIV图像。实验结果发现,即使鱼状物体的体长超过尾迹波长,支撑卡门步态的水动力也不会停止。总的来说,获得的结果有助于理解鱼和流体在卡门涡街游泳时的相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental study of hydrodynamic forces acting on artificial fish in a von Kármán vortex street
The present paper describes the hydrodynamic forces acting on different sized fish-shaped objects in a von Karman vortex street, where in a wake of an object a specific locomotion pattern, Karman gaiting, is observed. The present paper investigates the hydrodynamic forces, both lateral force and torque on a passive fish-shaped body in those hydrodynamic conditions. By using a range of fish length to wake wavelengths, size matters were experimentally tested for balancing the forces on an artificial fish intercepting oncoming vortices, potentially to exploit the lateral and rotational elements in the flow that may facilitate Karman gaiting in a biological fish. To do this, five artificial fish were manufactured to mimic a rainbow trout (Oncorhynchus mykiss), were inserted into the flow tunnel and recorded simultaneously the hydrodynamic forces and DPIV images. The experimental results found that the hydrodynamic forces supporting Karman gaiting did not stop even if the body length of the fish-like object exceeded the wake wavelength. Overall, the obtained results help to understand fish and fluid interactions when swimming in the Karman vortex street.
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来源期刊
UNDERWATER TECHNOLOGY
UNDERWATER TECHNOLOGY ENGINEERING, OCEAN-
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