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模拟变形液滴和气泡运动的改进水平集算法
引用本文:杨超,毛在砂.模拟变形液滴和气泡运动的改进水平集算法[J].中国化学工程学报,2002,10(3):263-272.
作者姓名:杨超  毛在砂
作者单位:InstituteofProcessEngineering,ChineseAcademyofSciences,Beijing100080,China
基金项目:Supported by the National Natural Science Foundation of China (No. 29836130).
摘    要:An improved level set approach for computing the incompressible two-phase flow with significantly deformed free interface in presented.The control volume formulation with the semi-implicit method for pressure-linked equations consistent(SIMPLEC)algorithm incroporated is used to solve the governing equations on a staggered grid.Several improvements concerning the convergence and numerical stability.The motion of a bubble or drop in a liquid with large density ratio,viscosity ratio and surface tension in numerically simulated.The computational results are in good agreement with the reported experimental data.

关 键 词:鼓泡行为模拟  改良水平集方法  液-液体系  气-液体系  二相流
修稿时间: 

An Improved Level Set Approach to the Simulation of Drop and Bubble Motion
YANG Chao,MAO Zaisha.An Improved Level Set Approach to the Simulation of Drop and Bubble Motion[J].Chinese Journal of Chemical Engineering,2002,10(3):263-272.
Authors:YANG Chao  MAO Zaisha
Affiliation:Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100080, China
Abstract:An improved level set approach for computing the incompressible two-phase flow with significantly deformed free interface is presented. The control volume formulation with the semi-implicit method for pressure-linked equations consistent(SIMPLEC) algorithm incorporated is used to solve the governing equations on a staggered grid. Several improvements concerning the computational grid, interface update, reinitialization procedure etc. are tested and found to be effective in promoting the convergence and numerical stability. The motion of a bubble or drop in a liquid with large density ratio, viscosity ratio and surface tension is numerically simulated. The computational results are in good agreement with the reported experimental data.
Keywords:level set approach  bubble  drop  flow  simulation  
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