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水力旋流分离器内流动和油水分离的数值模拟
引用本文:陆耀军,周力行. 水力旋流分离器内流动和油水分离的数值模拟[J]. 中国化学工程学报, 2003, 11(1): 97-101
作者姓名:陆耀军  周力行
作者单位:DepartmentofEngineeringMechanics,StateKeyLabortoryofCleanCoalCombustion,TsinghuaUniversity,Beijing100084,China
基金项目:Supported by the Special Funds for Major State Basic Research (No. 1999-0222-08).
摘    要:The fluid flow and oil-water separation were simulated using a Reynolds stress transport equation model of turbulence in water flow and a stochastic model of oil droplet motion,Simulation results give the axial and tangential velocity components,the pressure and turbulence intensity distribution and droplet trajectories for a hydrocyclone of F type and a hydrocyclone proposed by the present authors.The flow filed predictions are in qualitative agreement with the LDV measurements.The results show that the proposed hydrocyclone has better performance than the hydrocyclone of F type due to creating stronger centrifugal force and lower axial velocity.

关 键 词:水力旋流分离器 油水分离 数值模拟 化工过程
修稿时间: 

Numerical Simulation of Fluid Flow and Oil-Water Separation in Hydrocyclones
LU Yaojun,ZHOU Lixing. Numerical Simulation of Fluid Flow and Oil-Water Separation in Hydrocyclones[J]. Chinese Journal of Chemical Engineering, 2003, 11(1): 97-101
Authors:LU Yaojun  ZHOU Lixing
Affiliation:Department of Engineering Mechanics, State Key Laboratory of Clean Coal Combustion, Tsinghua University, Beijing 100084, China
Abstract:The fluid flow and oil-water separation were simulated using a Reynolds stress transport equation model of turbulence in water flow and a stochastic model of oil droplet motion. Simulation results give the axial and tangential velocity components, the pressure and turbulence intensity distribution and droplet trajectories for a hydrocyclone of F type and a hydrocyclone proposed by the present authors. The flow field predictions are in qualitative agreement with the LDV measurements. The results show that the proposed hydrocyclone has better performance than the hydrocyclone of F type due to creating stronger centrifugal force and lower axial velocity.
Keywords:hydrocyclones   oil-water separation   numerical simulation  
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