The effect of elevated initial vortex shapes on its evolution

IF 1.3 4区 工程技术 Q3 MECHANICS
A. Elikashvili, E. Golbraikh
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引用次数: 0

Abstract

The formation and evolution of helical vortices in various media is an important hydrodynamic problem. A separate problem is the study of the behavior of the initial vortex, which is elevated above the surface. The evolution of such vortices is a complex multiparameter phenomenon. Based on a simple hydrodynamic model (or minimal model) in Elikashvili et al (2017 Phys. Fluids 29 026602) have been studied the formation of vorticity near the surface as a function of the initial height of the vortex and the Reynolds number. However, the influence of the parameters of the initial vortex profile on its evolution was not considered. In this paper, based on a simple hydrodynamic model, we study the evolution and formation of vortices near a solid surface for various initial vorticity profiles. The most widespread vortex profiles of Rankine, Burgers, and Vatistas were chosen for research. The simulation shows that the evolution of the vortex depends on its initial profile.
初始旋涡形状升高对其演变的影响
螺旋涡在各种介质中的形成和演化是一个重要的流体动力学问题。一个单独的问题是研究初始涡流的行为,它被提升到表面以上。这种旋涡的演化是一个复杂的多参数现象。基于Elikashvili等人(2017 Phys.Fluids 29 026602)中的一个简单流体动力学模型(或最小模型),研究了表面附近涡度的形成,该涡度是涡流初始高度和雷诺数的函数。然而,没有考虑初始涡流剖面参数对其演变的影响。本文基于一个简单的流体动力学模型,研究了不同初始涡度剖面下固体表面附近旋涡的演化和形成。选择兰金、伯格和瓦蒂斯塔斯分布最广的涡旋剖面进行研究。模拟结果表明,旋涡的演化取决于其初始轮廓。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Fluid Dynamics Research
Fluid Dynamics Research 物理-力学
CiteScore
2.90
自引率
6.70%
发文量
37
审稿时长
5 months
期刊介绍: Fluid Dynamics Research publishes original and creative works in all fields of fluid dynamics. The scope includes theoretical, numerical and experimental studies that contribute to the fundamental understanding and/or application of fluid phenomena.
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