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PMID: 19889420 Published · ppublish English Journal Article

Turbulence model choice for the calculation of drag forces when using the CFD method.

Journal of biomechanics ·Vol. 43 ·No. 3 ·2010-02-10 ·页码 405-11

Zaïdi H, Fohanno S, Taïar R, Polidori G

Abstract

The aim of this work is to specify which model of turbulence is the most adapted in order to predict the drag forces that a swimmer encounters during his movement in the fluid environment. For this, a Computational Fluid Dynamics (CFD) analysis has been undertaken with a commercial CFD code (Fluent). The problem was modelled as 3D and in steady hydrodynamic state. The 3D geometry of the swimmer was created by means of a complete laser scanning of the swimmer's body contour. Two turbulence models were tested, namely the standard k-epsilon model with a specific treatment of the fluid flow area near the swimmer's body contour, and the standard k-omega model. The comparison of numerical results with experimental measurements of drag forces shows that the standard k-omega model accurately predicts the drag forces while the standard k-epsilon model underestimates their values. The standard k-omega model also enabled to capture the vortex structures developing at the swimmer's back and buttocks in underwater swimming; the same vortices had been visualized by flow visualization experiments carried out at the INSEP (National Institute for Sport and Physical Education in Paris) with the French national swimming team.

MeSH 主题词
Computer Simulation Female Friction Humans Male Models, Biological Nonlinear Dynamics Rheology/methods Shear Strength Stress, Mechanical Swimming/physiology Viscosity Water
化学物质
Water
作者与单位
共 4 位作者,点击展开单位 / ORCID
Zaïdi H
Université de Reims, GRESPI/Laboratoire de Thermomécanique, Moulin de la Housse, BP 1039, 51687 Reims cedex 2, France.
Fohanno S
Taïar R
Polidori G
Article Info
Journal
Journal of biomechanics
Abbr.
J Biomech
ISSN
1873-2380
Published
2010-02-10
电子出版
2009-00-03
页码
405-11
Language
English
Country/Region
United States
NLM ID
0157375
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