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Large Eddy Simulation of Particle-Laden Turbulent Flow over a Backward-Facing Step
作者姓名:王兵  张会强  王希麟  郭印诚  林文漪
作者单位:DepartmentofEngineeringMechanics,TsinghuaUniversity,Beijing100084,China
基金项目:the National Natural Science Foundation of China (No.19972026)
摘    要:Particle diffusion in large eddy structures with various Stokes number was analyzed numerically for the two-dimensional gas-particle turbulent flow over a backward-facing step. The continuous phase simulation was analyzed using the large eddy simulation (LES) method while the particle phase was analyzed by the Lagrangian method. The spatial and temporal results were used to analyze the evolution of the large eddy coherent structures and the vortex-particle interactions. The effect of the particle Stokes number on the instantaneous particle concentration distributions was also discussed. The simulations of the single-phase flow reproduced the character of the separation and reattachment flow and the essential features of the coherent structures. Numerous and complex vortex structures appeared at the high Reynolds number. Furthermore, the simulation shows that the Stokes number plays an important role in the particle dispersion and the instantaneous particle distribution. The continuous phase time-averaged results and the particle phase time-averaged results obtained from the LES analysis agree well with previous experimental data.

关 键 词:大漩涡仿真  湍流  颗粒分布  stokes数  LES

Large Eddy Simulation of Particle-Laden Turbulent Flow over a Backward-Facing Step
WANG Bing,ZHANG Huiqiang ,WANG Xilin ,GUO Yincheng,LIN Wenyi.Large Eddy Simulation of Particle-Laden Turbulent Flow over a Backward-Facing Step[J].Tsinghua Science and Technology,2004,9(1):57-63,68.
Authors:WANG Bing  ZHANG Huiqiang  WANG Xilin  GUO Yincheng  LIN Wenyi
Institution:WANG Bing,ZHANG Huiqiang ),WANG Xilin **,GUO Yincheng,LIN Wenyi
Abstract:Particle diffusion in large eddy structures with various Stokes number was analyzed numerically for the two-dimensional gas-particle turbulent flow over a backward-facing step. The continuous phase simulation was analyzed using the large eddy simulation (LES) method while the particle phase was analyzed by the Lagrangian method. The spatial and temporal results were used to analyze the evolution of the large eddy coherent structures and the vortex-particle interactions. The effect of the particle Stokes number on the in-stantaneous particle concentration distributions was also discussed. The simulations of the single-phase flow reproduced the character of the separation and reattachment flow and the essential features of the coherent structures. Numerous and complex vortex structures appeared at the high Reynolds number. Furthermore, the simulation shows that the Stokes number plays an important role in the particle dispersion and the instanta-neous particle distribution. The continuous phase time-averaged results and the particle phase time-averaged results obtained from the LES analysis agree well with previous experimental data.
Keywords:large eddy simulation  particle diffusion  backward-facing step  
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