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FLOW STRUCTURE FORMATION AND EVOLUTION IN CIRCULATING GAS-FLUIDIZED BEDS
作者姓名:JieLi  J.A.M.Kuipers
作者单位:[1]MaterialsScienceDivision,ArgonneNationalLaboratory,Argonne,IL.60439,USA [2]DepartmentofChemicalEngineering,TwenteUniversityEnschede,7500AE,TheNetherlands
摘    要:The occurrence of heterogeneous flow structures in gas-particle flows seriously affects the gas-solid contacting and transport processes in high-velocity gas-fluidized beds. Particles do not disperse uniformly in the flow but pass through the bed in a swarm of clusters. The so-called “core-annulus“ structure in the radial direction and “S“ shaped axial distribution of solids concentration characterize the typical flow structure in the system. A computational study, using the discrete particle approach based on molecular dynamics techniques, has been carried out to explore the mechanisms underlying formation of the clusters and the core-annulus structure. Based on energybudget analysis including work done by the drag force, kinetic energy, rotational energy, potential energy, and energy dissipation due to particle-particle and particle-wall collisions, the role of gas-solid interaction and inelastic collisions between the particles are elucidated. It is concluded that the competition between gas-solid interaction and particle-particle interaction determines the pattern formation in high-velocity gas-solid flows: if the gas-solid interaction (under elevated pressure) dominates, most of particle energy obtained by drag from the gas phase is partitioned such that particle potential energy is raised, leading to a uniform flow structure. Otherwise, a heterogeneous pattern exists, which could be induced by both particle -particle collisions and gas-solid interaction. Although both factors could cause the flow instability, the non-linear drag force is demonstrated to be the necessary condition to trigger heterogeneous flow structure formation. As gas velocity increases and goes beyond a critical value, the fluid-particle interaction suppresses particle collisional dissipation, and as a consequence a more homogeneous flow regime is formed.

关 键 词:流动结构  粒子碰撞  气体-固体相互作用  非线性拖拉  能量分布  气体-液体循环床

FLOW STRUCTURE FORMATION AND EVOLUTION IN CIRCULATING GAS-FLUIDIZED BEDS
JieLi J.A.M.Kuipers.FLOW STRUCTURE FORMATION AND EVOLUTION IN CIRCULATING GAS-FLUIDIZED BEDS[J].China Particuology,2004,2(1):1-12.
Authors:Jie Li    and J A M Kuipers
Institution:Jie Li1,2,* and J. A. M. Kuipers1 1Department of Chemical Engineering,Twente University,Enschede,7500 AE,The Netherlands 2Materials Science Division,Argonne National Laboratory,Argonne,IL. 60439,USA *Author to whom correspondence should be addressed. E-mail: jieli@anl.gov.
Abstract:
Keywords:flow structures  particle collision  gas-solid interaction  nonlinear drag  circulating gas-fluidized beds
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