The Effect of Eddy-bubble Interaction Model on the Turbulent Dispersion of Gas Bubbles in Stirred Tanks

Based on trajectory equations of gas bubble,an eddy-bubble interaction(EBI)model was developed. This model considered the effect of non-drag forces and took the eddy-bubble interaction time as the refreshing time scale of turbulent fluctuations.The relationship between the crossing-eddy time and the...

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Published inChinese journal of chemical engineering Vol. 18; no. 1; pp. 27 - 33
Main Author 韩路长 曹杨 吴学文 白鸽 刘跃进
Format Journal Article
LanguageEnglish
Published Elsevier B.V 01.02.2010
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ISSN1004-9541
2210-321X
DOI10.1016/S1004-9541(08)60318-3

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Abstract Based on trajectory equations of gas bubble,an eddy-bubble interaction(EBI)model was developed. This model considered the effect of non-drag forces and took the eddy-bubble interaction time as the refreshing time scale of turbulent fluctuations.The relationship between the crossing-eddy time and the eddy lifetime was discussed,and the predicted distributions of radial,axial velocities of bubbles and gas holdup were also given. Compared with eddy lifetime(EL)model,the EBI model gives somewhat smaller axial velocity in the upper circulation region and larger velocity in the lower circulation region,causing that fewer bubbles reach the lower circulation region and gas holdup becomes higher in the upper circulation region.The predicted gas holdup by the EBI model approaches closer to the experimental data in the discharge stream region.
AbstractList Based on trajectory equations of gas bubble, an eddy-bubble interaction (EBI) model was developed. This model considered the effect of non-drag forces and took the eddy-bubble interaction time as the refreshing time scale of turbulent fluctuations. The relationship between the crossing-eddy time and the eddy lifetime was discussed, and the predicted distributions of radial, axial velocities of bubbles and gas holdup were also given. Compared with eddy lifetime (EL) model, the EBI model gives somewhat smaller axial velocity in the upper circulation region and larger velocity in the lower circulation region, causing that fewer bubbles reach the lower circulation region and gas holdup becomes higher in the upper circulation region. The predicted gas holdup by the EBI model approaches closer to the experimental data in the discharge stream region.
Based on trajectory equations of gas bubble,an eddy-bubble interaction(EBI)model was developed. This model considered the effect of non-drag forces and took the eddy-bubble interaction time as the refreshing time scale of turbulent fluctuations.The relationship between the crossing-eddy time and the eddy lifetime was discussed,and the predicted distributions of radial,axial velocities of bubbles and gas holdup were also given. Compared with eddy lifetime(EL)model,the EBI model gives somewhat smaller axial velocity in the upper circulation region and larger velocity in the lower circulation region,causing that fewer bubbles reach the lower circulation region and gas holdup becomes higher in the upper circulation region.The predicted gas holdup by the EBI model approaches closer to the experimental data in the discharge stream region.
Author 韩路长 曹杨 吴学文 白鸽 刘跃进
AuthorAffiliation College of Chemical Engineering, Xiangtan University, Xiangtan 411105, China
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Cites_doi 10.1007/BF02124750
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Keywords stirred tank
eddy-bubble interaction
Eulerian-Lagrangian
turbulent dispersion
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Notes eddy-bubble interaction; turbulent dispersion; stirred tank; Eulerian-Lagrangian
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eddy-bubble interaction
Eulerian-Lagrangian
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  start-page: 529
  year: 1987
  ident: 10.1016/S1004-9541(08)60318-3_bib16
  article-title: “Criteria for the selection of stochastic models of particle trajectories in turbulent flows”
  publication-title: J. Fluid. Mech.
  doi: 10.1017/S0022112087001940
SSID ssj0020818
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Snippet Based on trajectory equations of gas bubble,an eddy-bubble interaction(EBI)model was developed. This model considered the effect of non-drag forces and took...
Based on trajectory equations of gas bubble, an eddy-bubble interaction (EBI) model was developed. This model considered the effect of non-drag forces and took...
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SubjectTerms Bubbles
Chemical engineering
Circulation
Computational fluid dynamics
Eddies
eddy-bubble interaction
Eulerian-Lagrangian
Mathematical models
stirred tank
Tanks
Turbulence
turbulent dispersion
扩散作用
搅拌罐
模型开发
流通速度
相互作用时间
Title The Effect of Eddy-bubble Interaction Model on the Turbulent Dispersion of Gas Bubbles in Stirred Tanks
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