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LLECMOD: A Bivariate Population Balance Simulation Tool for Liquid- Liquid Extraction Columns

机译:LLECMOD:用于液-液萃取塔的双变量总体平衡模拟工具

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Abstract: The population balance equation finds many applications in modelling poly-dispersed systems arising in manyengineering applications such as aerosols dynamics, crystallization, precipitation, granulation, liquid-liquid, gas-liquid,combustion processes and microbial systems. The population balance lays down a modern approach for modelling thecomplex discrete behaviour of such systems. Due to the industrial importance of liquid-liquid extraction columns for theseparation of many chemicals that are not amenable for separation by distillation, a Windows based program calledLLECMOD is developed. Due to the multivariate nature of the population of droplets in liquid –liquid extraction columns(with respect to size and solute concentration), a spatially distributed population balance equation is developed. The basisof LLECMOD depends on modern numerical algorithms that couples the computational fluid dynamics and populationbalances. To avoid the solution of the momentum balance equations (for the continuous and discrete phases), experimentalcorrelations are used for the estimation of the turbulent energy dissipation and the slip velocities of the moving dropletsalong with interaction frequencies of breakage and coalescence. The design of LLECMOD is flexible in such a way thatallows the user to define droplet terminal velocity, energy dissipation, axial dispersion, breakage and coalescence frequenciesand the other internal geometrical details of the column. The user input dialog makes the LLECMOD a user-friendlyprogram that enables the user to select the simulation parameters and functions easily. The program is reinforced by a parameterestimation package for the droplet coalescence models. The scale-up and simulation of agitated extraction columnsbased on the populations balanced model leads to the main application of the simulation tool.
机译:摘要:人口平衡方程在许多工程应用中产生的多分散系统建模中有许多应用,例如气溶胶动力学,结晶,沉淀,造粒,液-液,气-液,燃烧过程和微生物系统。人口平衡为建立此类系统的复杂离散行为建模提供了一种现代方法。由于液-液萃取塔在工业上的重要意义是用于分离许多不适合通过蒸馏分离的化学药品,因此开发了基于Windows的名为LLECMOD的程序。由于液-液萃取塔中液滴总体的多变量性质(相对于大小和溶质浓度),建立了空间分布的总体平衡方程。 LLECMOD的基础取决于现代数值算法,该算法将计算流体动力学和总体平衡耦合在一起。为了避免动量平衡方程的求解(对于连续相和离散相),实验相关性用于估计运动的液滴的湍流能量耗散和滑移速度,以及破裂和聚结的相互作用频率。 LLECMOD的设计非常灵活,使用户可以定义液滴的末端速度,能量耗散,轴向扩散,破裂和合并频率以及色谱柱的其他内部几何细节。用户输入对话框使LLECMOD成为用户友好的程序,使用户可以轻松选择仿真参数和功能。该程序通过液滴合并模型的参数估计程序包得到了增强。基于种群平衡模型的搅拌萃取塔的放大和仿真导致了该仿真工具的主要应用。

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