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Bubble dynamics in a two-dimensional gas-solid fluidized bed 被引量:1

Bubble dynamics in a two-dimensional gas-solid fluidized bed
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摘要 Related referential studies on gas-solid two-phase flows were briefly reviewed. Bubble ascending in a two-dimensional (2D) gas-solid fluidized bed was studied both experimentally and numerically. A modified continuum model expressed in the conservation form was used in numerical simulation. Solid-phase pressure was modeled via local sound speed; gas-phase turbulence was described by the K-ε two-equation model. The modified implicit multiphase formulation (IMF) scheme was used to solve the model equations in 2D Cartesian/cylindrical coordinates. The bubble ascending velocity and particle motion in the 2D fluidized bed were measured using the photochromic dye activation (PDA) technique, which was based on UV light activation of particles impregnated with the dye. Effects of bed height and superficial gas velocity on bubble formation and ascent were investigated numerically. The numerically obtained bubble ascending velocities were compared with experimental measurements. Gas bubble in jetting gas-solids fluidized bed was also simulated numerically. Related referential studies on gas-solid two-phase flows were briefly reviewed. Bubble ascending in a two-dimensional (2D) gas-solid fluidized bed was studied both experimentally and numerically. A modified continuum model expressed in the conservation form was used in numerical simulation. Solid-phase pressure was modeled via local sound speed; gas-phase turbulence was described by the K-ε two-equation model. The modified implicit multiphase formulation (IMF) scheme was used to solve the model equations in 2D Cartesian/cylindrical coordinates. The bubble ascending velocity and particle motion in the 2D fluidized bed were measured using the photochromic dye activation (PDA) technique, which was based on UV light activation of particles impregnated with the dye. Effects of bed height and superficial gas velocity on bubble formation and ascent were investigated numerically. The numerically obtained bubble ascending velocities were compared with experimental measurements. Gas bubble in jetting gas-solids fluidized bed was also simulated numerically.
出处 《China Particuology》 SCIE EI CAS CSCD 2007年第4期284-294,共11页
基金 The project was supported by the National Natural Science Foundation of China (NNSFC, No. 20476065) the Scientific Research Foundation for the R0Cs of the State Education Ministry (SRF for R0CS, SEM) the Key Laboratory of Multiphase Reaction of the Chinese Academy of Sciences (No. 2003-5) the Key Laboratory of 0rganic Synthesis of Jiangsu Prov., Chemical Experiment Center of Soochow University and R&D Foundation of Nanjing Medical University (NY0586).
关键词 FLUIDIZATION Numerical simulation Flow visualization Bubble dynamics Fluidization Numerical simulation Flow visualization Bubble dynamics
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