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CFD Simulation of Liquid-Liquid Two-Phase Hydrodynamics and Axial Dispersion Analysis for a Non-Pulsed Disc and Doughnut Solvent Extraction Column

机译:非脉冲盘和甜甜圈溶剂萃取塔的液-液两相流体动力学CFD模拟和轴向分散分析

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摘要

A two-phase computational fluid dynamics (CFD) simulation for a non-pulsed disc and doughnut solvent extraction column has been developed with commercial CFD software FLUENT. Simulated hydrodynamic results including phase distribution, velocity fields, and holdup are given, which enables predicted holdup to be compared with experimental data. Average absolute relative deviation (AARD) of experimental data and CFD prediction in this study is found to be 10.8%, which is comparable to the estimated error in the experimental data and the predictions from traditional correlations in the literature. To estimate the extent of axial dispersion, a species transport model is used for the continuous phase with a small amount of tracer introduced in the continuous phase, when Sauter mean diameter of the dispersed phase is set to be 3.5 mm. A two-point monitoring method is used to estimate a Peclet number. The tracer concentration distribution in the two-dimensional distance-time space is interpreted with MATLAB along with the experimental measurement. The simulated Peclet numbers are compared with column experiments, and in general the simulation underestimates the experimental data by 60%. Introducing a modified drag law improves the predictions. This work shows that CFD can successfully model the performance of a non-pulsed disc and doughnut solvent extraction column.
机译:使用商用CFD软件FLUENT开发了无脉冲圆盘和甜甜圈溶剂萃取塔的两相计算流体动力学(CFD)模拟。给出了包括相分布,速度场和滞留率在内的模拟流体力学结果,从而使预测的滞留率可以与实验数据进行比较。实验数据和CFD预测的平均绝对相对偏差(AARD)为10.8%,可与实验数据的估计误差和文献中传统相关性的预测相比较。为了估计轴向分散的程度,当分散相的Sauter平均直径设置为3.5 mm时,将一种物质迁移模型用于连续相,并在连续相中引入少量示踪剂。两点监视方法用于估计Peclet数。使用MATLAB以及实验测量来解释二维距离-时间空间中的示踪剂浓度分布。将模拟的Peclet数与柱实验进行比较,并且一般而言,模拟将实验数据低估了60%。引入修改后的阻力定律可以改善预测。这项工作表明CFD可以成功地模拟非脉冲圆盘和甜甜圈溶剂萃取塔的性能。

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