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A universal time scale for vortex ring formation

涡流环 涡流 物理 涡度 起动涡流 旋涡伸展 机械 马蹄涡 汉堡漩涡 粒子图像测速 经典力学 湍流
作者
Morteza Gharib,Edmond Rambod,Karim Shariff
出处
期刊:Journal of Fluid Mechanics [Cambridge University Press]
卷期号:360: 121-140 被引量:971
标识
DOI:10.1017/s0022112097008410
摘要

The formation of vortex rings generated through impulsively started jets is studied experimentally. Utilizing a piston/cylinder arrangement in a water tank, the velocity and vorticity fields of vortex rings are obtained using digital particle image velocimetry (DPIV) for a wide range of piston stroke to diameter ( L / D ) ratios. The results indicate that the flow field generated by large L / D consists of a leading vortex ring followed by a trailing jet. The vorticity field of the leading vortex ring formed is disconnected from that of the trailing jet. On the other hand, flow fields generated by small stroke ratios show only a single vortex ring. The transition between these two distinct states is observed to occur at a stroke ratio of approximately 4, which, in this paper, is referred to as the ‘formation number’. In all cases, the maximum circulation that a vortex ring can attain during its formation is reached at this non-dimensional time or formation number. The universality of this number was tested by generating vortex rings with different jet exit diameters and boundaries, as well as with various non-impulsive piston velocities. It is shown that the ‘formation number’ lies in the range of 3.6–4.5 for a broad range of flow conditions. An explanation is provided for the existence of the formation number based on the Kelvin–Benjamin variational principle for steady axis-touching vortex rings. It is shown that based on the measured impulse, circulation and energy of the observed vortex rings, the Kelvin–Benjamin principle correctly predicts the range of observed formation numbers.
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