평판형 방전판을 갖는 2단식 전기집진기의 집진판 블록배열이 집진효율에 미치는 영향

Effects of the Block Arrangement on the Collection Efficiency in the Two-Stage Electrostatic Precipitator with Charging Plate

  • 박성호 (경일대학교 기계공학부) ;
  • 박청연 (경일대학교 환경열공학연구실) ;
  • 김태권 (계명대학교 자동차공학부)
  • 발행 : 2000.06.01

초록

The effect of block arrangement has been investigated on the particle deposition in the specified collecting cell of two-stage electrostatic precipitator by numerical analysis. Recirculation zone existed at the downstream of the block in the collecting cell, and the particles entering the recirculation zone were deposited on the collecting plate. Particle trajectory and deposition had considerably different phenomenon according to electrostatic and inertial effect, which depended on inlet mean velocity, electrostatic number, and particle diameter in the collecting cell. The total collection efficiency reached a minimum value through an interaction of electrostatic and inertial effect. In the computational domain, total collection efficiency for the case of two blocks in the computational domain was more than that of one block at the relative small electrostatic number. However as the block distance and inertial effect increased, the difference between the collection efficiency of two cases decreased. In the range of relatively small particle size total collection efficiency was always superior to particle collection efficiency that was predicted by Deutsch equation.

키워드

참고문헌

  1. 한국대기환경학회지 v.16 no.2 2단식 전기집진기의 집진판 블록간격 및 입자크기가 입자의 부착효율에 미치는 영향 박성호;박청연
  2. J. Aerosol Sci. v.30 An experimental study on the performance of a single discharge wire-plate electrostatic precipitator with back corona Chang, C.L.;H. Bai
  3. Proceedings of the 4th Brazilian Congress on Mechanical Engineering Velocity characteristics in the vicinity of a two dimensional rib Crabb, D.;D.F.G. Durao;J.H. Whitelaw
  4. Air Pollution Control Theory Crawford, M.
  5. Trans. ASME, J. Fluids Eng. v.104 Review-numerical models for dilute gas-particle flows Crowe, C.T.
  6. International Journal for Numerical Methods in Engineering v.10 A computer solution for two-dimensional fluid-particle flows Crowe, C.T.;D.E. Stock
  7. Aerosol Technology Hinds, W.C.
  8. J. Electrostatics v.17 Comparison of wire-plate and plate-plate electrostatic precipitators in laminar flow Kihm, K.D.;M. Mitchner;S.A. Self
  9. J. Electrostatics v.19 Comparison of wire-plate and plate-plate electrostatics precipitators in turbulent flow Kihm, K.D.;M. Mitchner;S.A. Self
  10. Computer Methods in Applied Mechanics and Engineering v.3 The numerical computation of turbulent flows Launder, B.E.;D.B. Spalding
  11. IEE Proc v.135 Electrostatic precipitators McLean, K.J.
  12. Electrostatic precipitation Oglesby, S.Jr.;G.B. Nichols
  13. Numerical Heat Transfer and Fluid Flow Patankar, S.V.
  14. IEEE Trans v.IA-21 The effect of back corona in a laboratory scale electrostatic precipitator Patel, S.N.;T.D. Rahmolow;R.A. Kjendal;J.J. Meehan
  15. Aerosol Science and Technology Reist, P.C.
  16. J. Aerosol Sci. v.27 The effect of obstructions on the particle collection efficiency in a two-satage electrostatic precipitator Suh, Y.J.;S.S. Kim
  17. J. Fluid Mech. v.108 Electrohydrodynamics in an electrostatic precipitator Yamamoto, T.;H.R. Velkoff
  18. Aerosol Sci. Technol. v.27 Charging and collection of submicron particle in two-stage parallel-plate electrostatic precipitators Yoo, K.H.;J.S. Lee;M.D. Oh