首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >3D CFD-PBM modeling of the gas-solid flow field in a polydisperse polymerization FBR: The effect of drag model
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3D CFD-PBM modeling of the gas-solid flow field in a polydisperse polymerization FBR: The effect of drag model

机译:多分散聚合FBR中气固流场的3D CFD-PBM建模:阻力模型的影响

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This work investigated a coupled computational fluid dynamics and population balance modeling (CFD-PBM) approach to predict the hydrodynamic behavior of the complex gas-solid two-phase flow in a three-dimensional (3-D) polydisperse propylene polymerization fluidized bed reactors (FBRs). Four different drag models, namely Syamlal-O'Brien, Gidaspow, McKeen and EMMS, were incorporated into the CFD-PBM model for evaluating the different effect of drag force between the gas and solid phases. Simulation results revealed a significant effect of the drag model on gas-solid flow in polydisperse polymerization FBRs. It was found that (1) compared to Syamlal-O'Brien and Gidaspow drag models, McKeen and EMMS drag models could predict a lower bed height, a higher temperature and an obvious core-annulus structure in polymerization FBRs; (2) EMMS drag model outperforms the other three drag models with respect to pressure drop prediction; and (3) the drag coefficient had little influence on the evolution of Sauter number and particle-size distribution. (C) 2014 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:这项工作研究了耦合的计算流体动力学和种群平衡模型(CFD-PBM)方法,以预测三维(3-D)多分散丙烯聚合流化床反应器中复杂气固两相流的流体力学行为( FBR)。四种不同的阻力模型,即Syamlal-O'Brien,Gidaspow,McKeen和EMMS,被合并到CFD-PBM模型中,以评估气相和固相之间阻力的不同影响。仿真结果表明,阻力模型对多分散聚合FBR中的气固流动具有显着影响。结果发现:(1)与Syamlal-O'Brien和Gidaspow阻力模型相比,McKeen和EMMS阻力模型可以预测聚合FBR中较低的床层高度,较高的温度和明显的核环结构; (2)在压降预测方面,EMMS阻力模型优于其他三个阻力模型; (3)阻力系数对Sauter数的演变和粒径分布的影响很小。 (C)2014日本粉末技术学会。由Elsevier B.V.和日本粉末技术学会出版。版权所有。

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