Applied Mathematics and Mechanics (English Edition) ›› 1999, Vol. 20 ›› Issue (5): 495-502.

• 论文 • 上一篇    下一篇

RESEARCH ON THE PARTICLE DISPERSION IN THE PARTICULATE TWO-PHASE ROUND JET

林建忠1,2, 林江2, 朱丽兵1   

  1. 1. Department of Mechanics, the State Key Laboratory o f Fluid Power Transmission and Control, Zhejiang University, Hangzhou 310027, P.R.China;
    2. Hangzhou Institute of Applied Engineering, Hangzhou 3100
  • 收稿日期:1998-04-03 出版日期:1999-05-18 发布日期:1999-05-18
  • 基金资助:
    Project supported by the Zhejiang Province Natural Science Special Fund for Youth Scientists' Cultivation of China

RESEARCH ON THE PARTICLE DISPERSION IN THE PARTICULATE TWO-PHASE ROUND JET

Lin Jianzhong1,2, Lin Jiang2, Zhu Libing1   

  1. 1. Department of Mechanics, the State Key Laboratory o f Fluid Power Transmission and Control, Zhejiang University, Hangzhou 310027, P.R.China;
    2. Hangzhou Institute of Applied Engineering, Hangzhou 3100
  • Received:1998-04-03 Online:1999-05-18 Published:1999-05-18
  • Supported by:
    Project supported by the Zhejiang Province Natural Science Special Fund for Youth Scientists' Cultivation of China

摘要: In this paper, the three-dimensional vo rtex filament method was used to simulate the evolution of vortex structures in the axisymmetric round jet. The results agree well with the ones given by Chung and Troutt. Then one-coupling model was employed to calculate the particle motio n based on the computed flows. The results show that the particle motion is affe cted by flows obviously at the case of particle number St <<1 and negligibly at St >>1,particles distribute around the vortex structures uniformly at St~1. When perturbations with wavenumber 5 are introduced to vortex rings, part icles disperse wider along radial direction, which conforms to the experimental results. The degree of particle dispersion is in the direct ratio to the amplitu de of perturbation. The conclusions given in the paper are useful to the practic e usage.

Abstract: In this paper, the three-dimensional vo rtex filament method was used to simulate the evolution of vortex structures in the axisymmetric round jet. The results agree well with the ones given by Chung and Troutt. Then one-coupling model was employed to calculate the particle motio n based on the computed flows. The results show that the particle motion is affe cted by flows obviously at the case of particle number St <<1 and negligibly at St >>1,particles distribute around the vortex structures uniformly at St~1. When perturbations with wavenumber 5 are introduced to vortex rings, part icles disperse wider along radial direction, which conforms to the experimental results. The degree of particle dispersion is in the direct ratio to the amplitu de of perturbation. The conclusions given in the paper are useful to the practic e usage.

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