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CFD analysis of turbulence non-homogeneity in mixing vessels - A two-compartment model

机译:混合容器中湍流非均匀性的CFD分析-两室模型

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A two-compartment model has been developed for calculating the droplet/particle size distribution in suspension polymerization reactors by taking into account the large spatial variations of the turbulent kinetic energy and its dissipation rate in the vessel. The two-compartment model comprised two mixing zones, namely an impeller zone of high local energy dissipation rates and a circulation zone of low kinetic energy. Computational fluid dynamics (CFD) was employed for generating the spatial distribution of energy dissipation rates within an unbaffled mixing vessel agitated by a flat two-blade impeller. A general methodology was developed for extracting, from the results of the CFD simulations, the volume ratio of the impeller over the circulation zone, the ratio of the average turbulent dissipation rates in the two zones, and the exchange flow rate between the two compartments. The effect of agitation rate, continuous phase viscosity, impeller diameter, and mixing vessel scale on the two-compartment model parameters was elucidated. The two-compartment model was then applied to a non-homogeneous liquid-liquid dispersion process to calculate the time evolution of the droplet size distribution in the mixing vessel. An excellent agreement was obtained between theoretical and experimental results on droplet size distributions obtained from a laboratory-scale reactor operated over a wide range of experimental conditions. (C) 2002 Published by Elsevier Science Ltd. [References: 54]
机译:通过考虑湍流动能的大空间变化及其在容器中的耗散率,开发了一种两室模型,用于计算悬浮聚合反应器中的液滴/粒径分布。两室模型包括两个混合区,即局部能量耗散率高的叶轮区和动能低的循环区。计算流体动力学(CFD)用于在无挡板的混合容器中产生能量消散速率的空间分布,该混合容器由扁平的两叶片叶轮搅拌。开发了一种通用的方法,用于从CFD模拟的结果中提取叶轮在循环区域上的体积比,两个区域中平均湍流耗散率的比率以及两个隔室之间的交换流速。阐明了搅拌速率,连续相粘度,叶轮直径和混合容器规模对两室模型参数的影响。然后将两室模型应用于非均匀的液-液分散过程,以计算混合容器中液滴尺寸分布的时间演变。从在各种实验条件下运行的实验室规模的反应器获得的液滴尺寸分布的理论和实验结果之间取得了极好的一致性。 (C)2002由Elsevier Science Ltd.发布[参考:54]

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