CFD Analysis of Axial Flow Cyclone Separator for Subway Station HVAC System

지하역사 공기조화기에 적용 가능한 미세먼지 제거용 사이클론의 수치해석적 연구

  • Kim, Jin-Kwan (Dongmyeng Engineering Consultants) ;
  • Kim, Ho-Joong (SKKU Advanced Institute of NanoTechnology(SAINT), Sungkyunkwan University) ;
  • Lee, Myung-Jun (Department of Mechanical Engineering, Sungkyunkwan University) ;
  • Kim, Tae-Sung (Department of Mechanical Engineering, Sungkyunkwan University) ;
  • Kwon, Soon-Bark (Railroad Environment Research Department, Korea Railroad Research Institute)
  • 김진관 ((주)동명기술공단 부설연구소) ;
  • 김호중 (성균관대학교 나노과학기술학부) ;
  • 김명준 (성균관대학교 기계공학부) ;
  • 김태성 (성균관대학교 기계공학부) ;
  • 권순박 (한국철도기술연구원 철도환경연구실)
  • Published : 2008.11.21

Abstract

In this study, 3-dimensional Computational Fluid Dynamics (CFD) analysis was induced to simulate air flow and particle motion in the axial flow cyclone separator. The commercialized CFD code FLUENT was used to visualize pressure drop and particle collection efficiency inside the cyclone. We simulated 4 cyclone models with different shape of vane, such as turning angle or shape of cross section. For the air flow simulation, we calculated the flow field using standard ${\kappa}-{\varepsilon}$ turbulence viscous model. Each model was simulated with different inlet or outlet boundary conditions. Our major concern for the flow filed simulation was pressure drop across the cyclone. For the particle trajectory simulation, we adopted Euler-Lagrangian approach to track particle motion from inlet to outlet of the cyclone. Particle collection efficiencies of various conditions are calculated by number based collection efficiency. The result showed that the rotation angle of the vane plays major roll to the pressure drop. But the smaller rotation angle of vane causes particle collection efficiency difference with different inlet position.

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