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1.
Article in English | MEDLINE | ID: mdl-22587390

ABSTRACT

This study deals with recent researches undertaken by the authors in the field of hydrodynamics of human swimming. The aim of this numerical study was to investigate the flow around the entire swimmer's body. The results presented in this article focus on the combination of a 3D computational fluid dynamics code and the use of the k-ω turbulence model, in the range of Reynolds numbers representative of a swimming level varying from national to international competition. Emphasis is placed on the influence of a postural change of the swimmer's head in hydrodynamic performances, which is directly related to the reduction of overall drag. These results confirm and complete those, less accurate, of a preliminary 2D study recently published by the authors and allow the authors to optimise the swimmer's head position in underwater swimming.


Subject(s)
Posture/physiology , Swimming/physiology , Computer Simulation , Head , Humans , Hydrodynamics , Models, Biological , Rheology/methods
2.
J Appl Biomech ; 28(3): 279-83, 2012 Jul.
Article in English | MEDLINE | ID: mdl-21975086

ABSTRACT

The objective of this article is to perform a numerical modeling on the flow dynamics around a competitive female swimmer during the underwater swimming phase for a velocity of 2.2 m/s corresponding to national swimming levels. Flow around the swimmer is assumed turbulent and simulated with a computational fluid dynamics method based on a volume control approach. The 3D numerical simulations have been carried out with the code ANSYS FLUENT and are presented using the standard k-ω turbulence model for a Reynolds number of 6.4 × 10(6). To validate the streamline patterns produced by the simulation, experiments were performed in the swimming pools of the National Institute of Sports and Physical Education in Paris (INSEP) by using the tufts method.


Subject(s)
Models, Biological , Rheology/methods , Swimming/physiology , Adult , Computer Simulation , Female , Humans , Shear Strength/physiology
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