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CFD simulation of cyclone separators to reduce air pollution

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dc.contributor.author Bogodage, S.G.
dc.contributor.author Leung, A.Y.T.
dc.date.accessioned 2017-11-08T11:40:00Z
dc.date.available 2017-11-08T11:40:00Z
dc.date.issued 2015-09-05
dc.identifier.citation Bogodage, S.G., Leung, A.Y.T. (2015). "CFD simulation of cyclone separators to reduce air pollution", Powder Technology, Vol.286, pp. 488-506 en_US, si_LK
dc.identifier.issn 0032-5910
dc.identifier.uri http://dr.lib.sjp.ac.lk/handle/123456789/6728
dc.description.abstract Attached en_US, si_LK
dc.description.abstract The present paper is based on CFD modelling of gas-solid flow in cyclone separators with different dust outlet geometries (with and without down-comer tubes at the cyclone bottom) to analyse the flow characteristics and the cyclone performance. Numerically obtained cyclone performance parameters, collection efficiency, and pressure drop were compared with experimental results. Changes in the particle trajectories due to the variation of the flow field inside the cyclone separators with the effect of the dust outlet section were also analysed in detail. The simulation results largely agreed with the experimental results, and discrepancies were caused by modelling limitations and inconsistencies of the particle tracking model with the real gas-solid flow. However, comparable to the experiments, the CFD simulations also predicted the increments in collection efficiencies by dust outlet geometries modified with down-comers within acceptable pressure drops
dc.language.iso en_US en_US, si_LK
dc.publisher Powder Technology en_US, si_LK
dc.subject Cyclone separator en_US, si_LK
dc.subject Computational fluid dynamics en_US, si_LK
dc.subject Down-comer tube en_US, si_LK
dc.subject Large Eddy Simulation en_US, si_LK
dc.subject Solid loading rate en_US, si_LK
dc.title CFD simulation of cyclone separators to reduce air pollution en_US, si_LK
dc.type Article en_US, si_LK


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