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首页> 外文期刊>Chemical Engineering & Technology: Industrial Chemistry -Plant Equipment -Process Engineering -Biotechnology >CFD Prediction of the Critical Agitation Speed for Complete Dispersion in Liquid-Liquid Stirred Reactors
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CFD Prediction of the Critical Agitation Speed for Complete Dispersion in Liquid-Liquid Stirred Reactors

机译:液体搅拌反应器中完全分散的临界搅拌速度的CFD预测

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A computational fluid dynamics (CFD) model is adopted to simulate the turbulent immiscible liquid-liquid flow in a stirred vessel based on a two-fluid model with a k-ε-A_P turbulence model. An improved inner-outer iterative procedure is adopted to deal with the impeller rotation in a fully baffled stirred tank. Different drag formulations are examined, and the effect of the droplet size on both the dispersed phase holdup distribution and the velocity field is analyzed. Two different numerical criteria are tested for determining the critical impeller speed for complete dispersion. The simulated critical impeller speeds are generally in good agreement with the correlations in the literature when the fixed droplet size is properly selected. This demonstrates that the modeling approach and the numerical criteria proposed in this work are promising for predicting the dispersion characteristics in liquid-liquid stirred tanks.
机译:在具有k-ε-A_P湍流模型的双流体模型的基础上,采用计算流体动力学(CFD)模型来模拟搅拌容器中湍流不混溶的液-液流动。采用改进的内外迭代程序来处理叶轮在完全折流的搅拌罐中的旋转。检查了不同的阻力配方,并分析了液滴大小对分散相保持率分布和速度场的影响。测试了两个不同的数值标准,以确定完全分散的临界叶轮速度。当正确选择固定液滴尺寸时,模拟临界叶轮速度通常与文献中的相关性很好。这表明在这项工作中提出的建模方法和数值标准有望用于预测液-液搅拌罐中的分散特性。

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