Modeling turbulent flow in stirred tanks with CFD: the influence of the modeling approach, turbulence model and numerical scheme
Identifieur interne : 00AB91 ( Main/Exploration ); précédent : 00AB90; suivant : 00AB92Modeling turbulent flow in stirred tanks with CFD: the influence of the modeling approach, turbulence model and numerical scheme
Auteurs : J. Aubin [France, Australie] ; D. F. Fletcher [Australie] ; C. Xuereb [France]Source :
- Experimental thermal and fluid science [ 0894-1777 ] ; 2004.
Descripteurs français
- Pascal (Inist)
English descriptors
- KwdEn :
Abstract
Single phase turbulent flow in a tank stirred by a down- and an up-pumping pitched blade turbine has been simulated using computational fluid dynamics. The effect of the modeling approach, discretization scheme and turbulence model on mean velocities. turbulent kinetic energy and global quantities, such as the power and circulation numbers, has been investigated. The results have been validated by laser doppler velocimetry (LDV) data
Affiliations:
- Australie, France
- Midi-Pyrénées, Nouvelle-Galles du Sud, Occitanie (région administrative)
- Sydney, Toulouse
- Université de Sydney
Links toward previous steps (curation, corpus...)
- to stream PascalFrancis, to step Corpus: 004F38
- to stream PascalFrancis, to step Curation: 001176
- to stream PascalFrancis, to step Checkpoint: 004A57
- to stream Main, to step Merge: 00B884
- to stream Main, to step Curation: 00AB91
Le document en format XML
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<term>Turbine impeller</term>
<term>Turbulence structure</term>
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<front><div type="abstract" xml:lang="en">Single phase turbulent flow in a tank stirred by a down- and an up-pumping pitched blade turbine has been simulated using computational fluid dynamics. The effect of the modeling approach, discretization scheme and turbulence model on mean velocities. turbulent kinetic energy and global quantities, such as the power and circulation numbers, has been investigated. The results have been validated by laser doppler velocimetry (LDV) data</div>
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<li>Toulouse</li>
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