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CFD-population balance modeling and simulation of coupled hydrodynamics and mass transfer in liquid extraction columns

机译:液体萃取塔中流体动力学与传质耦合的CFD种群平衡建模和模拟

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摘要

A hierarchical approach for modeling and simulation of coupled hydrodynamics and mass transfer in liquid extraction columns using detailed and reduced bivariate population balance models is presented. The hierarchical concept utilizes a one-dimensional CFD model with detailed bivariate population balances. This population balance model is implemented in the PPBLAB software which is used to optimize the column hydrodynamics. The optimized droplet model parameters (droplet breakage and coalescence) are then used by a two-dimensional CFD reduced population balance model. As a reduced bivariate population balance model, OPOSPM (One Primary and One Secondary Particle Method) is implemented in the commercial FLUENT software to predict the coupled hydrodynamics and mass transfer of an RDC extraction column with 88 compartments. The simulation results show that the coupled two-dimensional-OPOSPM model produces results that are very close to that of the one-dimensional PPBLAB detailed population balance model. The advantages of PPBLAB are the ease of model setup, implementation and the reduced simulation time (order of minutes), when compared to the computational time (order of weeks) and computational resources using FLUENT software. The advantages of the two-dimensional CFD model is the direct estimation of the turbulent energy dissipation using the k-ε model and the local resolution of continuous phase back mixing.
机译:提出了使用详细的和减少的双变量种群平衡模型对液体萃取塔中的流体动力学和传质耦合进行建模和仿真的分层方法。层次概念使用具有详细的双变量总体平衡的一维CFD模型。该总体平衡模型在PPBLAB软件中实现,该软件用于优化色谱柱流体动力学。然后,优化的液滴模型参数(液滴破裂和合并)将由二维CFD减少的人口平衡模型使用。作为简化的双变量种群平衡模型,在商业FLUENT软件中实施了OPOSPM(一种主要颗粒和一种辅助颗粒方法),以预测具有88个隔室的RDC萃取塔的耦合流体动力学和传质。仿真结果表明,耦合的二维OPOSPM模型产生的结果与一维PPBLAB详细人口平衡模型的结果非常接近。与使用FLUENT软件的计算时间(几周)和计算资源相比,PPBLAB的优势在于简化了模型的设置,实施和减少了仿真时间(数分钟)。二维CFD模型的优势在于,可以使用k-ε模型直接估算湍流的能量耗散,并可以估算连续相回混的局部分辨率。

著录项

  • 来源
    《Applied Mathematical Modelling》 |2015年第17期|5105-5120|共16页
  • 作者单位

    The University of Jordan, Faculty of Engineering & Technology. Department of Chemical Engineering, 11942 Amman, Jordan,Separation Science and Technology, TU Kaiserslautem, Germany;

    Separation Science and Technology, TU Kaiserslautem, Germany,Centre of Mathematical and Computational Modelling, TU Kaiserslautern, P.O. Box 3049, 67653 Kaiserslautern, Germany;

    Al-Balqa Applied University, Faculty of Eng. Tech. Chem. Eng. Dept, POB 15008, 11134 Amman, Jordan;

    The University of Jordan, Faculty of Engineering & Technology. Department of Chemical Engineering, 11942 Amman, Jordan;

    Separation Science and Technology, TU Kaiserslautem, Germany,Centre of Mathematical and Computational Modelling, TU Kaiserslautern, P.O. Box 3049, 67653 Kaiserslautern, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Liquid extraction; OPOSPM; CFD; Population balance; PPBLAB; FLUENT;

    机译:液体萃取;OPOSPM;差价合约人口平衡;PPBLAB;流利;
  • 入库时间 2022-08-18 02:59:34

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