A Computational Fluid Dynamics Analysis of Hydrodynamic Force Acting on a Swimmer’S Hand in a Swimming Competition

A stroke-analysis system based on a CFD (Computational Fluid Dynamics) simulation has been developed to evaluate the hydrodynamic forces acting on a swimmer’s hand. Using the present stroke-analysis system, a stroke technique of top swimmers can be recognized with regard to the hydrodynamic forces....

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Main Authors: Yohei Sato, Takanori Hino
Format: Article
Language:English
Published: University of Uludag 2013-12-01
Series:Journal of Sports Science and Medicine
Subjects:
Online Access:http://www.jssm.org/research.php?id=jssm-12-679.xml
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spelling doaj-5bc9f1480c2c44e8826e2085a1ceecc42020-11-24T22:58:34ZengUniversity of UludagJournal of Sports Science and Medicine1303-29681303-29682013-12-01124679689A Computational Fluid Dynamics Analysis of Hydrodynamic Force Acting on a Swimmer’S Hand in a Swimming CompetitionYohei Sato0Takanori HinoNuclear Energy and Safety, Paul Scherrer Institute, Villigen PSI, 5232 Villigen, SwitzerlandA stroke-analysis system based on a CFD (Computational Fluid Dynamics) simulation has been developed to evaluate the hydrodynamic forces acting on a swimmer’s hand. Using the present stroke-analysis system, a stroke technique of top swimmers can be recognized with regard to the hydrodynamic forces. The developed analysis system takes into account the effect of a transient stroke motion including acceleration and a curved stroke path without using assumptions such as a quasi-static approach. An unsteady Navier-Stokes solver based on an unstructured grid method is employed as the CFD method to calculate a viscous flow around a swimmer’s hand which can cope with the complicated geometry of hands. The CFD method is validated by comparison with experiments in steady-state and transient conditions. Following the validations, a stroke-analysis system is proposed, in which a hand moves in accordance with a stroke path measured by synchronized video cameras, and the fluid forces acting on the hand are computed with the CFD method. As a demonstration of the stroke-analysis system, two world class swimmers’ strokes in a race of 200 m freestyle are analyzed. The hydrodynamic forces acting on the hands of the top swimmers are computed, and the comparison of two swimmers shows that the stroke of the faster swimmer, who advanced at 1.84 m·s-1 during the stroke-analysis, generated larger thrust with higher thrust efficiency than that of the slower swimmer, who advanced at 1.75 m·s-1. The applicability of the present stroke analysis system has been proved through this analysis.http://www.jssm.org/research.php?id=jssm-12-679.xmlComputational fluid dynamicsswimmingdragthrustthrust efficiencystroke analysis
collection DOAJ
language English
format Article
sources DOAJ
author Yohei Sato
Takanori Hino
spellingShingle Yohei Sato
Takanori Hino
A Computational Fluid Dynamics Analysis of Hydrodynamic Force Acting on a Swimmer’S Hand in a Swimming Competition
Journal of Sports Science and Medicine
Computational fluid dynamics
swimming
drag
thrust
thrust efficiency
stroke analysis
author_facet Yohei Sato
Takanori Hino
author_sort Yohei Sato
title A Computational Fluid Dynamics Analysis of Hydrodynamic Force Acting on a Swimmer’S Hand in a Swimming Competition
title_short A Computational Fluid Dynamics Analysis of Hydrodynamic Force Acting on a Swimmer’S Hand in a Swimming Competition
title_full A Computational Fluid Dynamics Analysis of Hydrodynamic Force Acting on a Swimmer’S Hand in a Swimming Competition
title_fullStr A Computational Fluid Dynamics Analysis of Hydrodynamic Force Acting on a Swimmer’S Hand in a Swimming Competition
title_full_unstemmed A Computational Fluid Dynamics Analysis of Hydrodynamic Force Acting on a Swimmer’S Hand in a Swimming Competition
title_sort computational fluid dynamics analysis of hydrodynamic force acting on a swimmer’s hand in a swimming competition
publisher University of Uludag
series Journal of Sports Science and Medicine
issn 1303-2968
1303-2968
publishDate 2013-12-01
description A stroke-analysis system based on a CFD (Computational Fluid Dynamics) simulation has been developed to evaluate the hydrodynamic forces acting on a swimmer’s hand. Using the present stroke-analysis system, a stroke technique of top swimmers can be recognized with regard to the hydrodynamic forces. The developed analysis system takes into account the effect of a transient stroke motion including acceleration and a curved stroke path without using assumptions such as a quasi-static approach. An unsteady Navier-Stokes solver based on an unstructured grid method is employed as the CFD method to calculate a viscous flow around a swimmer’s hand which can cope with the complicated geometry of hands. The CFD method is validated by comparison with experiments in steady-state and transient conditions. Following the validations, a stroke-analysis system is proposed, in which a hand moves in accordance with a stroke path measured by synchronized video cameras, and the fluid forces acting on the hand are computed with the CFD method. As a demonstration of the stroke-analysis system, two world class swimmers’ strokes in a race of 200 m freestyle are analyzed. The hydrodynamic forces acting on the hands of the top swimmers are computed, and the comparison of two swimmers shows that the stroke of the faster swimmer, who advanced at 1.84 m·s-1 during the stroke-analysis, generated larger thrust with higher thrust efficiency than that of the slower swimmer, who advanced at 1.75 m·s-1. The applicability of the present stroke analysis system has been proved through this analysis.
topic Computational fluid dynamics
swimming
drag
thrust
thrust efficiency
stroke analysis
url http://www.jssm.org/research.php?id=jssm-12-679.xml
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