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用各向异性代数应力模型数值模拟搅拌槽中的三维全流场
引用本文:孙海燕,王卫京,毛在砂.用各向异性代数应力模型数值模拟搅拌槽中的三维全流场[J].中国化学工程学报,2002,10(1):15-24.
作者姓名:孙海燕  王卫京  毛在砂
作者单位:[1]InstituteofProcessEngineering(formerlyInstituteofChemicalMetallurgy),ChineseAcademyofSciences,Beijing100080,China [2]InstituteofProcessEngineering(formerlyInstituteofChemicalMetallurgy),ChineseAcademyofS
基金项目:the National Natural Science Foundation of China (No. 29792074).
摘    要:In accordance to the anisotropic feature of turbulent flow, an anisotropic algebraic stress model is adopted to predict the turbulent flow field and turbulent characteristics generated by a Rushton disc turbine with the improved inner-outer iterative procedure. The predicted turbulent flow is compared with experimental data and the simulation by the standard κ-ε turbulence model. The anisotropic algebraic stress model is found to give better prediction than the standard κ-ε turbulence model. The predicted turbulent flow field is in accordance to experimental data and the trend of the turbulence intensity can be effectively reflected in the simulation. The distribution of turbulent shear rate in the stirred tanks was simulated with the established numerical procedure.

关 键 词:各向异性代数应力模型  数值模拟  湍流槽  三维流动
修稿时间: 

Numerical Simulation of the Whole Three-Dimensional Flow in a Stirred Tank with Anisotropic Algebraic Stress Model
SUN Haiyan,WANG Weijing,MAO Zaisha.Numerical Simulation of the Whole Three-Dimensional Flow in a Stirred Tank with Anisotropic Algebraic Stress Model[J].Chinese Journal of Chemical Engineering,2002,10(1):15-24.
Authors:SUN Haiyan  WANG Weijing  MAO Zaisha
Affiliation:formerly Institute of Chemical Metallurgy
Abstract:In accordance to the anisotropic feature of turbulent flow, an anisotropic algebraic stress model is adopted to predict the turbulent flow field and turbulent characteristics generated by a Rushton disc turbine with the improved inner-outer iterative procedure. The predicted turbulent flow is compared with experimental data and the simulation by the standard k-E turbulence model. The anisotropic algebraic stress model is found to give better prediction than the standard k-E turbulence model. The predicted turbulent flow field is in accordance to experimental data and the trend of the turbulence intensity can be effectively reflected in the simulation. The distribution of turbulent shear rate in the stirred tanks was simulated with the established numerical procedure.
Keywords:agitated vessel  anisotropic algebraic stress model  numerical simulation  inner-outer iteration  Rushton turbine  
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