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Numerical Investigation of the Flow Profiles in the Electrically Enhanced Cyclone
A numerical model for simulation of the electrohydrodynamic flow in an electrically enhanced cyclone is presented. A finite element approach was applied to solve the coupled equations for the positive corona-induced electric field. Three-dimensional simulations of gas flow were carried using Reynolds-Averaged Navier-Stokes equations including the Reynolds stress model and the electrohydrodynamic effect. Numerical results show that the change in the flow profile because of the influence of the corona-induced electric field is apparent when the inlet flow rate is low but is negligible at higher flow rates.
Numerical Investigation of the Flow Profiles in the Electrically Enhanced Cyclone
A numerical model for simulation of the electrohydrodynamic flow in an electrically enhanced cyclone is presented. A finite element approach was applied to solve the coupled equations for the positive corona-induced electric field. Three-dimensional simulations of gas flow were carried using Reynolds-Averaged Navier-Stokes equations including the Reynolds stress model and the electrohydrodynamic effect. Numerical results show that the change in the flow profile because of the influence of the corona-induced electric field is apparent when the inlet flow rate is low but is negligible at higher flow rates.
Numerical Investigation of the Flow Profiles in the Electrically Enhanced Cyclone
Shi, Liming (author) / Bayless, David J. (author) / Kremer, Greg (author) / Stuart, Ben (author)
Journal of the Air & Waste Management Association ; 57 ; 489-496
2007-04-01
8 pages
Article (Journal)
Electronic Resource
Unknown
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