Acceso abierto

Experimental Study on EHD Flow Transition in a Small Scale Wire-plate ESP


Cite

[1] Robinson, M. (1971). Electrostatic Precipitation. New York: Wiley Interscience.Search in Google Scholar

[2] Oglesby, S., Nichols, G.B. (1978). Electrostatic Precipitation. New York: Marcel Dekker Inc.Search in Google Scholar

[3] Liang, W., Lin, T. (1994). The characteristics of ionic wind and its effect on electrostatic precipitators. Aerosol Science and Technology, 20 (4), 330-344.10.1080/02786829408959689Search in Google Scholar

[4] Seok, J.P., Sang, S.K. (2000). Electrohydrodynamic flow and particle transport mechanism in electrostatic precipitators with cavity walls. Aerosol Science and Technology, 33 (3), 205–221.Search in Google Scholar

[5] Mizeraczyk, J. et al. (2001). Measurements of the velocity field of the flue gas flow in an electrostatic precipitator model using PIV method. Journal of Electrostatics, 51–52, 272–277.10.1016/S0304-3886(01)00098-5Search in Google Scholar

[6] Podlinski, J. et al. (2006). Electrohydrodynamic gas flow in a positive polarity wire-plate electrostatic precipitator and related dust particle collection efficiency. Journal of Electrostatics, 64 (3-4), 259–262.10.1016/j.elstat.2005.06.006Search in Google Scholar

[7] Podlinski, J. et al. (2006). 3D PIV measurements of the ehd flow patterns in a narrow electrostatic precipitator with wire-plate or wire-flocking electrodes. Czechoslovak Journal of Physics, 56 (Suppl. 2), B1009–B1016.Search in Google Scholar

[8] Niewulis, A. et al. (2007). EHD flow measured by 3D PIV in a narrow electrostatic precipitator with longitudinal-to-flow wire electrode and smooth or flocking grounded plane electrode. Journal of Electrostatics, 65 (12), 728-734.10.1016/j.elstat.2007.05.006Search in Google Scholar

[9] Podlinski, J. et al. (2006). EHD flow in a wide electrode spacing spike–plate electrostatic precipitator under positive polarity. Journal of Electrostatics, 64 (7-9), 498-505.10.1016/j.elstat.2005.10.004Search in Google Scholar

[10] Chang, J.S. et al. (2006). On-set of EHD turbulence for cylinder in cross flow under corona discharges. Journal of Electrostatics, 64 (7-9), 569-573.10.1016/j.elstat.2005.10.035Search in Google Scholar

[11] Chang, J.S., Dekowski, J., Podlinski, J., Brocilo, D. (2005). Electrohydrodynamic gas flow regime map in a wire plate electrostatic precipitator. In Industry Applications Conference: Fourtieth IAS Annual Meeting, 2-6 October 2005, Hong Kong, China. IEEE, 2597-2600.10.1109/IAS.2005.1518826Search in Google Scholar

[12] Farnoosh, N., Adamiak, K., Castle, G.S.P. (2010). 3-D numerical analysis of EHD turbulent flow and mono-disperse charged particle transport and collection in a wire-plate ESP. Journal of Electrostatics, 68 (6), 513-522.10.1016/j.elstat.2010.07.002Search in Google Scholar

[13] Kawakami, H. et al. (2013). Per formance characteristics between horizontally and vertically oriented electrodes EHD ESP for collection of low-resistive diesel particulates. Journal of Electrostatics, 71 (6), 1117-1123.10.1016/j.elstat.2013.10.004Search in Google Scholar

[14] Li, Y. et al. (2015). CFD simulation of high-temperature effect on EHD characteristics in a wire-plate electrostatic precipitator. Chinese Journal of Chemical Engineering, 23 (4), 633-640.10.1016/j.cjche.2014.06.038Search in Google Scholar

[15] Raffel, M., Willert, C.E., Wereley, S., Kompenhans, J. (2007). Particle Image Velocimetry : A Practical Guide. Springer.10.1007/978-3-540-72308-0Search in Google Scholar

[16] IEEE. (2003). Technical committee, recommended international standard for dimensionless parameters used in electrohydrodynamics. IEEE Transactions on Dielectrics and Electrical Insulation, 10 (1), 3–6.Search in Google Scholar

[17] Podlinski, J., Niewulis, A., Mizeraczyk, J., Atten, P. (2008). ESP performance for various dust densities. Journal of Electrostatics, 66 (5-6), 246-253.10.1016/j.elstat.2008.01.003Search in Google Scholar

[18] Lei, H., Wang, L., Wu, Z. (2008). EHD turbulent flow and Monte-Carlo simulation for particle charging and tracing in a wire-plate electrostatic precipitator. Journal of Electrostatics, 66 (3-4), 130–141.10.1016/j.elstat.2007.11.001Search in Google Scholar

[19] Zhao, L., Adamiak, K. (2008). Numerical simulation of the electrohydrodynamic flow in a single wire-plate electrostatic precipitator. IEEE Transactions on Industry Applications, 44 (3), 683-691.10.1109/TIA.2008.921453Search in Google Scholar

[20] Leonard G.L., Mitchner, M., Self, S.A. (1983). An experimental study of the electrohydrodynamic flow in electrostatic precipitators. Journal of Fluid Mechanics, 127 (1), 123–140.10.1017/S0022112083002657Search in Google Scholar

[21] Yabe, A., Mori, Y., Hijikata, K. (1978). EHD study of the corona wind between wire and plate electrodes. AIAA Journal, 16 (4), 340-345.10.2514/3.7528Search in Google Scholar

[22] Kallio, G.A., Stock, D.E. (1990). Flow visualization inside a wire-plate electrostatic precipitator. IEEE Transactions on Industry Applications, 26 (3), 503–514.10.1109/28.55953Search in Google Scholar

eISSN:
1335-8871
Idioma:
Inglés
Calendario de la edición:
6 veces al año
Temas de la revista:
Engineering, Electrical Engineering, Control Engineering, Metrology and Testing