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Numerical Study of Particle Motion and Particle Beam Formation Through a Critical Orifice

임계 오리피스를 통과한 입자의 운동특성과 입자 빔에 관한 수치적 연구

  • 안진홍 (한양대학교 대학원 기계공학과) ;
  • 안강호 (한양대학교 기계공학과)
  • Received : 1998.12.07
  • Published : 1999.10.01

Abstract

Particle motion through a disk type critical orifice placed in a 3.0cm diameter chamber has been studied numerically. In the simulation, the velocity field is solved using Pantankar's SIMPLER algorithm for the compressible flow and convergence of the computation is confirmed if the mass source at each control volume is smaller than $10^{-7}$. The particle motion in the flow field is solved in Lagrangian method. The particle trajectories showed that the particles injected away from the center line are expanded rapidly. At lower pressures, this expansion phenomena are more dominant. At lower pressures, the clear difference in particle and air speed is showed all the way down to the exit plan. It was found that particles with Stokes number of ca.2.5 tend to focus close to the center line very well except the particles travelling near the wall. However, particles with Stokes number greater than ca.2.5 show a tendency to cross the center line.

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