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搅拌槽内液-固两相体系的数值研究(Ⅰ)流场的数值模拟
引用本文:王峰,王卫京,毛在砂.搅拌槽内液-固两相体系的数值研究(Ⅰ)流场的数值模拟[J].中国化学工程学报,2004,12(5):599-609.
作者姓名:王峰  王卫京  毛在砂
作者单位:InstituteofProcessEngineering,ChineseAcademyofSciences,Beijing100080,China
摘    要:Three-dimensional solid-liquid flow is mathematically formulated by means of the “two-fluid” approach and the two-phase k-ε-Ap turbulence model. The turbulent fluctuation correlations appearing in the Reynolds time averaged governing equations are fully incorporated. The solid-liquid flow field and solid concentration distribution in baffled stirred tanks with a standard Rushton impeller are numerically simulated using an improved “inner-outer” iterative procedure. The flow pattern is identified via the velocity vector plots and a recirculation loop with higher solid concentration is observed in the central vicinity beneath the impeller. Comparison of the simulation with experimental data on the mean velocities and the turbulence quantities of the solid phase is made and quite reasonable agreement is obtained except for the impeller swept volume. The counterpart of liquid phase is presented as well. The predicted solid concentration distribution for three experimental cases with the average solid concentration up to 20% is also found to agree reasonably with the experimental results published in the literature.

关 键 词:两相体系  数值研究  流场  数值模拟  搅拌槽
修稿时间: 

Numerical Study of Solid-Liquid Two-Phase Flow in Stirred Tanks with Rushton Impeller (I) Formulation and Simulation of Flow Field
WANG Feng,WANG Weijing,MAO Zaishao.Numerical Study of Solid-Liquid Two-Phase Flow in Stirred Tanks with Rushton Impeller (I) Formulation and Simulation of Flow Field[J].Chinese Journal of Chemical Engineering,2004,12(5):599-609.
Authors:WANG Feng  WANG Weijing  MAO Zaishao
Affiliation:Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100080, China
Abstract:Three-dimensional solid-liquid flow is mathematically formulated by means of the "two-fluid" approach and the two-phase k-ε-AP turbulence model. The turbulent fluctuation correlations appearing in the Reynolds time averaged governing equations are fully incorporated. The solid-liquid flow field and solid concentration distribution in baffled stirred tanks with a standard Rushton impeller are numerically simulated using an improved "inner-outer"iterative procedure. The flow pattern is identified via the velocity vector plots and a recirculation loop with higher solid concentration is observed in the central vicinity beneath the impeller. Comparison of the simulation with experimental data on the mean velocities and the turbulence quantities of the solid phase is made and quite reasonable agreement is obtained except for the impeller swept volume. The counterpart of liquid phase is presented as well.The predicted solid concentration distribution for three experimental cases with the average solid concentration up to 20% is also found to agree reasonably with the experimental results published in the literature.
Keywords:stirred tank  solid-liquid flow  two-fluid model  inner-outer iterative procedure  numerical simulation
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