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Hydrodynamic Behavior in a Tapered Bubble Column
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作者 ZHANGKai ZHAOYu-long ZHANGBi-jiang 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2004年第4期478-482,共5页
The experiment was conducted to explore the hydrodynamics in a conical column with a height of 3.00 m, and a taper angle of 1.91°. Three regimes occur in succession with increasing superficial gas velocity. Ove... The experiment was conducted to explore the hydrodynamics in a conical column with a height of 3.00 m, and a taper angle of 1.91°. Three regimes occur in succession with increasing superficial gas velocity. Overall gas holdup increases with an increase in gas velocity and a decrease in solid concentration or static slurry height. Axial solid holdup becomes more uniform with increasing gas velocity, while axial gas holdup decreases from the bottom to the top. Both dry and wet pressure drops across the gas distributor increase with an increase in superficial gas velocity. 展开更多
关键词 Tapered slurry bubble column Flow regime transition Overall gas holdup axial holdups profile Distributor pressure drop
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VELOCITY PROFILES FOR AXIAL LAMINAR FLOW OF POWER-LAWFLUIDS THROUGH ECCENTRIC ANNULI
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作者 Yue Xiang-an Chen Jia-lang Huang Kuang-dao Daqing Petroleum Institute,Anda city,P.R.China 《Journal of Hydrodynamics》 SCIE EI CSCD 1989年第4期79-88,共10页
An analytical solution of velocity profiles for Non-Newtonian fluids described by the power-law equation in axial laminar flow through eccentric annuli is presented.The expressions of limit velocities and contours of ... An analytical solution of velocity profiles for Non-Newtonian fluids described by the power-law equation in axial laminar flow through eccentric annuli is presented.The expressions of limit velocities and contours of equal velocity are obtained. The main approaches,claimed in this paper,are that the term T_(rz)/r in the differential equation of flow and the non-symmetrical velocity distribution about the geometric center of the radial clearance are considered. 展开更多
关键词 FLOW VELOCITY profileS FOR axial LAMINAR FLOW OF POWER-LAWFLUIDS THROUGH ECCENTRIC ANNULI
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