首页 | 本学科首页   官方微博 | 高级检索  
     

界面传质中Rayleigh对流的格子Boltzmann模拟和实验验证(英文)
引用本文:付博,袁希钢,刘伯潭,陈淑勇,张会书,曾爱武,余国琮.界面传质中Rayleigh对流的格子Boltzmann模拟和实验验证(英文)[J].中国化学工程学报,2011,19(5):845-854.
作者姓名:付博  袁希钢  刘伯潭  陈淑勇  张会书  曾爱武  余国琮
作者单位:State Key Laboratory of Chemical Engineering, School of Chemical Engineering and Technology, Tianjin University, Tianjin 300072, China
基金项目:Supported by the National Natural Science Foundation of China (20736005)
摘    要:Concentration gradient induced Rayleigh convection can influence effectively interfacial mass transfer processes, but the convection phenomena are known as mesoscopic and complex. In order to investigate this phe-nomenon, a two-equation Lattice Boltzmann Method (LBM) is proposed to simulate the velocity and the concentra-tion distributions of Rayleigh convection generated in the CO2 absorption into ethanol liquid. The simulated results on velocity distributions are experimentally verified by PIV (particle image velocimetry technique) measurements. In order to simplify the analysis, the convection in the simulation as well as in the experiment, the Rayleigh convec-tion was manipulated into a single down flow pattern. The simulated results show that the concentration contours agree qualitatively with the schlieren images in the literature. The experimental and simulated results show that the Rayleigh convection under investigation is dominated by the flow in the downward direction and impels exchange of the liquid between the interfacial vicinity and the liquid bulk promoting the renewal of interfacial liquid, and hence enhances mass transfer. The comparison between the simulated and experimental results demonstrated that the proposed LBM is a promising alternative for simulating mass transfer induced Rayleigh convection.

关 键 词:Rayleigh  convection  lattice  Boltzmann  method  particle  image  velocimetry  interfacial  mass  transfer  instantaneous  mass  flux  
收稿时间:2011-6-10
修稿时间:2011-6-10  

Characterization of Rayleigh convection in interfacial mass transfer by lattice Boltzmann simulation and experimental verification
FU Bo,YUAN Xigang,LIU Botan,CHEN Shuyong,ZHANG Huishu,ZENG Aiwu,YU Guocong.Characterization of Rayleigh convection in interfacial mass transfer by lattice Boltzmann simulation and experimental verification[J].Chinese Journal of Chemical Engineering,2011,19(5):845-854.
Authors:FU Bo  YUAN Xigang  LIU Botan  CHEN Shuyong  ZHANG Huishu  ZENG Aiwu  YU Guocong
Affiliation:State Key Laboratory of Chemical Engineering, School of Chemical Engineering and Technology, Tianjin University, Tianjin 300072, China
Abstract:Concentration gradient induced Rayleigh convection can influence effectively interfacial mass transfer processes, but the convection phenomena are known as mesoscopic and complex. In order to investigate this phenomenon, a two-equation Lattice Boltzmann Method (LBM) is proposed to simulate the velocity and the concentration distributions of Rayleigh convection generated in the CO2 absorption into ethanol liquid. The simulated results on velocity distributions are experimentally verified by PIV (particle image velocimetry technique) measurements. In order to simplify the analysis, the convection in the simulation as well as in the experiment, the Rayleigh convection was manipulated into a single down flow pattern. The simulated results show that the concentration contours agree qualitatively with the schlieren images in the literature. The experimental and simulated results show that the Rayleigh convection under investigation is dominated by the flow in the downward direction and impels exchange of the liquid between the interfacial vicinity and the liquid bulk promoting the renewal of interfacial liquid, and hence enhances mass transfer. The comparison between the simulated and experimental results demonstrated that the proposed LBM is a promising alternative for simulating mass transfer induced Rayleigh convection.
Keywords:Rayleigh convection  lattice Boltzmann method  particle image velocimetry  interfacial mass transfer  instantaneous mass flux
本文献已被 CNKI ScienceDirect 等数据库收录!
点击此处可从《中国化学工程学报》浏览原始摘要信息
点击此处可从《中国化学工程学报》下载全文
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号