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Numerical simulation of the flow field in a dense-media cyclone 被引量:14

Numerical simulation of the flow field in a dense-media cyclone
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摘要 An analytical study of the flow and pressure fields inside a small-diameter dense-media cyclone is presented.The simulations were done with the help of the CFD software FLUENT.The following conclusions were reached:the tangential velocity tends to increase when moving from the center toward the exterior.The velocity then begins to decrease when the maximum velocity point is reached.The velocity field divides into two different sections;an inner swirling zone and an outer swirling zone.The axial velocity points down at the wall and gradually decreases toward the bottom.Continuing toward the bottom,the axial velocity passes through zero and then gradually increases in the opposite direction.In the cyclone's central zone,the pressure is negative and the suction of air allows an air column to be formed therein.At the center of the radial negative zone the pressure drops to its lowest value—phenomenon that has been verified by theoretical analysis.Some discrepancies between the observed data and the simulated data are noted when an analysis in made on a cyclone operating with either fresh water only or with water with added heavy particles. An analytical study of the flow and pressure fields inside a small-diameter dense-media cyclone is presented. The simulations were done with the help of the CFD software FLUENT. The following conclusions were reached: the tangential velocity tends to increase when moving from the center toward the exterior. The velocity then begins to decrease when the maximum velocity point is reached. The velocity field divides into two different sections; an inner swirling zone and an outer swirling zone. The axial velocity points down at the wall and gradually decreases toward the bottom. Continuing toward the bottom, the axial velocity passes through zero and then gradually increases in the opposite direction. In the cyclone's central zone, the pressure is negative and the suction of air allows an air column to be formed therein. At the center of the radial negative zone the pressure drops to its lowest value-phenomenon that has been verified by theoretical analysis. Some discrepancies between the observed data and the simulated data are noted when an analysis in made on a cyclone operating with either fresh water only or with water with added heavy particles.
出处 《Mining Science and Technology》 EI CAS 2009年第2期225-229,共5页 矿业科学技术(英文版)
基金 Projects 2007AA05Z339 supported by the Hi-tech Research and Development Program of China CPEUKF08-10 by the Key Laboratory Opening Fund of Coal Processing & Efficient Utilization,Ministry of Education of China
关键词 CYCLONE numerical simulation tangential velocity axial velocity pressure filed 模拟流场 旋风 媒体 密集 数值 切向速度 轴向速度 CFD软件
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