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On the Origins of Vortex Shedding in Two-dimensional Incompressible Flows

机译:二维不可压缩流中涡旋脱落的起源

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摘要

An exegesis of a novel mechanism leading to vortex splitting and subsequent shedding that is valid for two-dimensional incompressible, inviscid or viscous, and external or internal or wall-bounded flows, is detailed in this research. The mechanism, termed the Vortex-Shedding Mechanism (VSM), is simple and intuitive, requiring only two coincident conditions in the flow: (1) the existence of a location with zero momentum and (2) the presence of a net force having a positive divergence. Numerical solutions of several model problems illustrate causality of the VSM. Moreover, the VSM criteria is proved to be a necessary and sufficient condition for a vortex splitting event in any two-dimensional, incompressible flow. The VSM is shown to exist in several canonical problems including the external flow past a circular cylinder. Suppression of the von Kármán vortex street is demonstrated for Reynolds numbers of 100 and 400 by mitigating the VSM.
机译:在这项研究中详细说明了一种新颖的机理的解释,该机理导致涡旋分裂和随后的脱落,该现象对于二维不可压缩,无粘性或粘性以及外部或内部或壁垒流动有效。该机制被称为涡旋脱落机制(VSM),简单直观,只需要两个同时的条件即可:(1)存在零动量的位置,(2)存在具有积极分歧。几个模型问题的数值解说明了VSM的因果关系。此外,VSM准则被证明是任何二维不可压缩流中涡旋分裂事件的必要和充分条件。 VSM被证明存在几个典型问题,包括通过圆柱体的外部流动。通过缓解VSM,雷诺数分别为100和400时,可以抑制vonKármán涡街。

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