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Numerical Simulation of Droplet Size Distribution in Vertical Upward Annular Flow

机译:垂直向上环形流动中液滴尺寸分布的数值模拟

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The liquid droplet size distribution in gas-liquid vertical upward annular flow is investigated through a CFD (computational fluid dynamics)-PBM (population balance model) coupled model in this paper. Two-fluid Eulerian scheme is employed as the framework of this model and a population balance equation is used to obtain the dispersed liquid droplet diameter distribution, where three different coalescence and breakup kernels are investigated. The Sauter mean diameter d_(32) is used as a bridge between a two-fluid model and a PBM. The simulation results suggest that the original Luo-Luo kernel and the mixed kernel A (Luo's coalescence kernel incorporated with Prince and Blanch's breakup kernel) can only give reasonable predictions for large diameter droplets. Mixed kernel B (Saffman and Turner's coalescence kernel incorporated with Lehr's breakup kernel) can accurately capture the particle size distribution (PSD) of liquid droplets covering all droplet sizes, and is appropriate for the description of liquid droplet size distribution in gas-liquid annular flow.
机译:通过CFD(计算流体动力学)-PBM(人口平衡模型)耦合模型研究了气液垂直向上环形流动中液滴的大小分布。该模型以二流体欧拉方案为框架,并使用种群平衡方程获得分散的液滴直径分布,研究了三种不同的聚结和分解核。 Sauter平均直径d_(32)用作双流体模型和PBM之间的桥梁。仿真结果表明,原始的Luo-Luo核和混合核A(与Prince和Blanch的破碎核结合在一起的Luo的聚结核)只能给出大直径液滴的合理预测。混合核B(Saffman和Turner的合并核与Lehr的分解核结合在一起)可以准确捕获涵盖所有液滴尺寸的液滴的粒径分布(PSD),并且适合描述气液环形流中的液滴尺寸分布。

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