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Eulerian–Lagrangian simulation of bubble coalescence in bubbly flow using the spring-dashpot model
引用本文:Jing Xue,Feiguo Chen,Ning Yang,Wei Ge. Eulerian–Lagrangian simulation of bubble coalescence in bubbly flow using the spring-dashpot model[J]. 中国化学工程学报, 2017, 25(3): 249-256. DOI: 10.1016/j.cjche.2016.08.006
作者姓名:Jing Xue  Feiguo Chen  Ning Yang  Wei Ge
作者单位:1.State Key Laboratory of Multiphase Complex Systems, Institute of Process Engineering, Chinese Academy of Sciences, P. O. Box 353, Beijing 100190, China;2.University of Chinese Academy of Sciences, Beijing 100049, China
基金项目:The authors wish to acknowledge the long term support from the National Natural Science Foundation of China,Ministry of Science and Technology of China,State Key Laboratory of Multiphase complex systems,Chinese Academy of Sciences
摘    要:The Eulerian–Lagrangian simulation of bubbly flow has the advantage of tracking the motion of bubbles in continuous fluid, and hence the position and velocity of each bubble could be accurately acquired. Previous simulation usually used the hard-sphere model for bubble–bubble interactions, assuming that bubbles are rigid spheres and the collisions between bubbles are instantaneous. The bubble contact time during collision processes is not directly taken into account in the collision model. However, the contact time is physically a prerequisite for bubbles to coalesce, and should be long enough for liquid film drainage. In this work we applied the spring-dashpot model to model the bubble collisions and the bubble contact time, and then integrated the spring-dashpot model with the film drainage model for coalescence and a bubble breakage model. The bubble contact time is therefore accurately recorded during the collisions. We investigated the performance of the spring-dashpot model and the effect of the normal stiffness coefficient on bubble coalescence in the simulation.The results indicate that the spring-dashpot model together with the bubble coalescence and breakage model could reasonably reproduce the two-phase flow field, bubble coalescence and bubble size distribution. The influence of normal stiffness coefficient on simulation is also discussed.

关 键 词:Bubble column  Spring-dashpot model  Coalescence  Break-up  Bubble size distribution  
收稿时间:2016-04-15

Eulerian-Lagrangian simulation of bubble coalescence in bubbly flow using the spring-dashpot model
Jing Xue,Feiguo Chen,Ning Yang,Wei Ge. Eulerian-Lagrangian simulation of bubble coalescence in bubbly flow using the spring-dashpot model[J]. Chinese Journal of Chemical Engineering, 2017, 25(3): 249-256. DOI: 10.1016/j.cjche.2016.08.006
Authors:Jing Xue  Feiguo Chen  Ning Yang  Wei Ge
Affiliation:1.State Key Laboratory of Multiphase Complex Systems, Institute of Process Engineering, Chinese Academy of Sciences, P. O. Box 353, Beijing 100190, China;2.University of Chinese Academy of Sciences, Beijing 100049, China
Abstract:The Eulerian-Lagrangian simulation of bubbly flow has the advantage of tracking the motion of bubbles in continuous fluid,and hence the position and velocity of each bubble could be accurately acquired.Previous simulation usually used the hard-sphere model for bubble-bubble interactions,assuming that bubbles are rigid spheres and the collisions between bubbles are instantaneous.The bubble contact time during collision processes is not directly taken into account in the collision model.However,the contact time is physically a prerequisite for bubbles to coalesce,and should be long enough for liquid film drainage.In this work we applied the spring-dashpot model to model the bubble collisions and the bubble contact time,and then integrated the spring-dashpot model with the film drainage model for coalescence and a bubble breakage model.The bubble contact time is therefore accurately recorded during the collisions.We investigated the performance of the spring-dashpot model and the effect of the normal stiffness coefficient on bubble coalescence in the simulation.The results indicate that the spring-dashpot model together with the bubble coalescence and breakage model could reasonably reproduce the two-phase flow field,bubble coalescence and bubble size distribution.The influence of normal stiffness coefficient on simulation is also discussed.
Keywords:Bubble column  Spring-dashpot model  Coalescence  Break-up  Bubble size distribution
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