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相互作用的飘动旗帜的异常流体动力学牵引

Anomalous hydrodynamic drafting of interacting flapping flags.

作者信息

Ristroph Leif, Zhang Jun

机构信息

Department of Physics, Cornell University, Ithaca, New York 14853, USA.

出版信息

Phys Rev Lett. 2008 Nov 7;101(19):194502. doi: 10.1103/PhysRevLett.101.194502. Epub 2008 Nov 3.

Abstract

In aggregates of objects moving through a fluid, bodies downstream of a leader generally experience reduced drag force. This conventional drafting holds for objects of fixed shape, but interactions of deformable bodies in a flow are poorly understood, as in schools of fish. In our experiments on "schooling" flapping flags, we find that it is the leader of a group who enjoys a significant drag reduction (of up to 50%), while the downstream flag suffers a drag increase. This counterintuitive inverted drag relationship is rationalized by dissecting the mutual influence of shape and flow in determining drag. Inverted drafting has never been observed with rigid bodies, apparently due to the inability to deform in response to the altered flow field of neighbors.

摘要

在一群物体在流体中移动时,领头物体下游的物体通常会受到较小的阻力。这种传统的尾随现象适用于形状固定的物体,但对于流体中可变形物体的相互作用,人们了解甚少,比如鱼群的情况。在我们对“成群”飘动旗帜的实验中,我们发现群体中的领头旗帜能显著降低阻力(高达50%),而下游的旗帜阻力却会增加。通过剖析形状和流动在决定阻力方面的相互影响,这种违反直觉的反向阻力关系得到了合理的解释。刚性物体从未观察到反向尾随现象,显然是因为它们无法根据相邻物体改变的流场而变形。

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