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Relative Velocity between Particle and Fluid in a Two-phase Turbulent Flow
Vai Kuong Sin
2002-04
Conference Namethe 4th WSEAS International Mechanical Engineering Multiconference (MEM 2002)
Source PublicationProceedings of the 4th WSEAS International Mechanical Engineering Multiconference (MEM 2002)
Conference DateMay 12-16, 2002
Conference PlaceCancun, Mexico
Abstract

A numerical study is presented for relative velocity between particle and fluid in a grid- generated turbulent flow field which is simulated by a two-equation turbulence (ke) model. Spatial behavior of this velocity is important in the determination of particle dispersion. Both linear and nonlinear drag formulations are considered in detail. Numerical results show that, for nonlinear drag formulation, the occurrence of the maximum value of relative velocity is well ahead of the location where the particle dispersion measurement is taken in the experiment. Hence, better predictions of particle dispersion obtained with the nonlinear drag formulation should be expected. it is also found that the mean square relative velocity components in the gravity direction and in the direction normal to the gravity reach the maximum values at different times.

KeywordComputational Fluid Dynamics Mean Square Relative Velocity Turbulence Two-phase Flow
Language英語English
Document TypeConference paper
CollectionFaculty of Science and Technology
DEPARTMENT OF ELECTROMECHANICAL ENGINEERING
AffiliationFaculty of Science and Technology, University of Macau P. O. Box 3001, Macao SAR, China
First Author AffilicationFaculty of Science and Technology
Recommended Citation
GB/T 7714
Vai Kuong Sin. Relative Velocity between Particle and Fluid in a Two-phase Turbulent Flow[C], 2002.
APA Vai Kuong Sin.(2002). Relative Velocity between Particle and Fluid in a Two-phase Turbulent Flow. Proceedings of the 4th WSEAS International Mechanical Engineering Multiconference (MEM 2002).
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