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液固两相圆柱绕流尾迹内颗粒扩散分布的离散涡数值研究
引用本文:黄远东,吴文权.液固两相圆柱绕流尾迹内颗粒扩散分布的离散涡数值研究[J].应用数学和力学,2006,27(4):477-483.
作者姓名:黄远东  吴文权
作者单位:上海理工大学 环境工程系,上海 200093
基金项目:中国科学院资助项目;上海市教委资助项目
摘    要:基于离散涡方法求得的非定常水流场和颗粒的Lagrange运动方程,数值模拟了稀疏液固两相圆柱绕流尾迹内颗粒的扩散分布.获得了流动的涡谱与3种不同St数颗粒(St=0.25,1.0,40)在流场中的分布.通过引入扩散函数来定量表示颗粒在流场中的纵向扩散强度,并计算得到了不同St数颗粒的扩散函数随时间的变化.数值结果揭示出了液固两相圆柱绕流尾迹中的颗粒扩散分布与颗粒的St数和尾涡结构密切相关:1) 中小St数(St=0.25~4.0)颗粒在运动过程中不能进入涡核区,而在旋涡结构的外沿聚集,且颗粒的St数愈大,其越远离涡核区域;2) 在圆柱绕流尾迹区域内,中小St数(St=0.25~4.0)颗粒的纵向扩散强度随其St数的增大而减小.

关 键 词:液固两相    高Reynolds数    离散涡方法    尾涡    颗粒扩散
文章编号:1000-0887(2006)04-0477-07
收稿时间:2004-06-18
修稿时间:2005-12-15

Numerical Study of Particle Distribution in the Wake of Liquid-Particle Flows Past a Circular Cylinder Using Discrete Vortex Method
HUANG Yuan-dong,WU Wen-quan.Numerical Study of Particle Distribution in the Wake of Liquid-Particle Flows Past a Circular Cylinder Using Discrete Vortex Method[J].Applied Mathematics and Mechanics,2006,27(4):477-483.
Authors:HUANG Yuan-dong  WU Wen-quan
Institution:Department of Environmental Engineering, University of Shanghai for Science and Technology, Shanghai 200093, P. R. China
Abstract:Particle-laden water flows past a circular cylinder are numerically investigated.The Discrete vortex method was employed to evaluate the unsteady water flow fields and a Lagrangian approach was applied for tracking individual solid particles.A dispersion function was defined to represent the dispersion scale of the particle.The wake vortex patterns,the distributions and the time series of dispersion functions of particles with different Stokes numbers were obtained.Numerical results show that the particle distribution in the wake of the circular cylinder is closely related to the particle's Stokes number and the structure of wake vortices: 1) the intermediate sized particles with Stokes numbers,St,of 0.25,1.0 and 4.0 can not enter the vortex cores and concentrate near the peripheries of the vortex structure2) in the circular cylinder wake,the dispersion intensity of particles decreases as St is increased from 0.25 to 4.0.
Keywords:liquid-particle  high Reynolds number  discrete vortex method(DVM)  wake vortex  particle dispersion
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