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CFD simulation of gas-liquid flows in stirred vessel equipped with dual Rushton turbines: influence of parallel, merging and diverging flow configurations

机译:配备双Rushton涡轮的搅拌容器中气液流动的CFD模拟:平行,合并和分叉流动配置的影响

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Computational fluid dynamics (CFD) was used to investigate the influence of parallel, merging and diverging flow configurations on the gas dispersion operation in stirred vessel. The simulation was based on the two-fluid model along with the standard k-epsilon turbulence model along with an appropriate drag correction to account for bulk turbulence [Khopkar, A.R., Ramade, V.V., 2006. CFD simulation of gas-liquid stirred vessel: VC, S33 and L33 flow regimes. A.I.Ch.E. journal 52, 1654-1671]. The model predictions were compared with the published experimental data of Bombac, Zun [2000. Gas-filled cavity structures and local void fraction distribution in vessel with dual-impellers. Chemical Engineering Science 55, 2995-3001] for parallel flow configuration. The predicted results show reasonably good agreement with the experimental data. The computational model was then used to simulate the gas-liquid flows for the other two flow configurations. The results of this work provide 'a priory' information on the implications of flow configuration on the vessel performance. (c) 2008 Elsevier Ltd. All rights reserved.
机译:计算流体动力学(CFD)用于研究平行,合并和发散的流动配置对搅拌容器中气体分散操作的影响。该模拟基于双流体模型以及标准kε湍流模型以及适当的阻力校正以解决整体湍流[Khopkar,AR,Ramade,VV,2006。气液搅拌容器的CFD模拟: VC,S33和L33流动方式。 A.I.Ch.E.杂志52,1654-1671]。将模型预测与已发布的Bombac,Zun [2000。双叶轮容器中的充气腔结构和局部空隙率分布。化学工程科学55,2995-3001],用于平行流配置。预测结果与实验数据吻合良好。然后将计算模型用于模拟其他两种流量配置的气液流量。这项工作的结果为流量配置对船舶性能的影响提供了“先验”信息。 (c)2008 Elsevier Ltd.保留所有权利。

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