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萃取体系滴内和两相阻力控制的单液滴传质实验和数值模拟研究
引用本文:李天文,毛在砂,陈家镛,费维扬. 萃取体系滴内和两相阻力控制的单液滴传质实验和数值模拟研究[J]. 中国化学工程学报, 2002, 10(1): 1-14
作者姓名:李天文  毛在砂  陈家镛  费维扬
作者单位:Institute of Process Engineering formerly Institute of Chemic.al Metallurgy, Chinese ;Academy of Sciences, Beijing 100080, ChinaFEI WeiyangState Key United Laboratory of ;Chemical Engineering, Tsinghua University, Beijing 100084, China ; State Key United Laboratory of Chemical Engineering, Tsinghua University, Beijing 100084, ;China
基金项目:国家自然科学基金,SINOPEC 
摘    要:Numerical simulation of transient mass transfer to a single drop controlled by the internal resistance or by the resistance in both phases was mathematically formulated and simulated in a boundary-fitted orthogonal coordinate system. The simulated results on the transient mass transfer dominated by the internal resistance are in good agreement with the Newman and Kronig-Brink models for drops with low Reynolds number. When the drop Reynolds number is up to 200, the mass transfer coefficient from numerical simulation is very low as compared with the Handlos-Baron model. The cases with mass transfer resistance residing in both the continuous and drop phases were simulated successfully and compared with the experimental data in three extraction systems recommended by European Confederation of Chemical Engineering (EFCE). For single drops with Re < 200, the numerically predicted values of the extraction fraction and overall mass transfer coefficient are in reasonable coincidence with the experimental data. It is concluded that the numerical simulation can be resorted in some cases of solvent extraction for conducting numerical experiments and parametric study. Nevertheless, for better resolution as higher Reynolds number drops are simulated, more sophisticated techniques should be developed and incorporated to deal with the large deformation and transient shape oscillation as well as possible Marangoni effect.

关 键 词:溶剂萃取系统 两相阻力控制 数值模拟 单液滴传质实验
修稿时间: 

Experimental and Numerical Investigations of Single Drop Mass Transfer in Solvent Extraction Systems with Resistance in Both Phases
LI Tianwen,MAO Zaisha,CHEN Jiayong,FEI Weiyang. Experimental and Numerical Investigations of Single Drop Mass Transfer in Solvent Extraction Systems with Resistance in Both Phases[J]. Chinese Journal of Chemical Engineering, 2002, 10(1): 1-14
Authors:LI Tianwen  MAO Zaisha  CHEN Jiayong  FEI Weiyang
Affiliation:Institute of Process Engineering formerly Institute of Chemic.al Metallurgy, Chinese Academy of Sciences, Beijing 100080, ChinaFEI WeiyangState Key United Laboratory of Chemical Engineering, Tsinghua University, Beijing 100084, China State Key United Laboratory of Chemical Engineering, Tsinghua University, Beijing 100084, China
Abstract:Numerical simulation of transient mass transfer to a single drop controlled by the internal
Keywords:solvent extraction  single drop  numerical simulation  mass transfer experiment
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