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手指微微张开可增强游泳推进力。

Swimming propulsion forces are enhanced by a small finger spread.

作者信息

Marinho Daniel A, Barbosa Tiago M, Reis Victor M, Kjendlie Per L, Alves Francisco B, Vilas-Boas João P, Machado Leandro, Silva António J, Rouboa Abel I

机构信息

Department of Sport Sciences, University of Beira Interior, Covilhã, Portugal.

出版信息

J Appl Biomech. 2010 Feb;26(1):87-92. doi: 10.1123/jab.26.1.87.

Abstract

The main aim of this study was to investigate the effect of finger spread on the propulsive force production in swimming using computational fluid dynamics. Computer tomography scans of an Olympic swimmer hand were conducted. This procedure involved three models of the hand with differing finger spreads: fingers closed together (no spread), fingers with a small (0.32 cm) spread, and fingers with large (0.64 cm) spread. Steady-state computational fluid dynamics analyses were performed using the Fluent code. The measured forces on the hand models were decomposed into drag and lift coefficients. For hand models, angles of attack of 0 degrees, 15 degrees, 30 degrees, 45 degrees, 60 degrees, 75 degrees, and 90 degrees, with a sweep back angle of 0 degrees, were used for the calculations. The results showed that the model with a small spread between fingers presented higher values of drag coefficient than did the models with fingers closed and fingers with a large spread. One can note that the drag coefficient presented the highest values for an attack angle of 90 degrees in the three hand models. The lift coefficient resembled a sinusoidal curve across the attack angle. The values for the lift coefficient presented few differences among the three models, for a given attack angle. These results suggested that fingers slightly spread could allow the hand to create more propulsive force during swimming.

摘要

本研究的主要目的是利用计算流体动力学研究手指展开对游泳推进力产生的影响。对一名奥运游泳运动员的手部进行了计算机断层扫描。该过程涉及三种手指展开程度不同的手部模型:手指并拢(无展开)、手指展开较小(0.32厘米)以及手指展开较大(0.64厘米)。使用Fluent软件进行稳态计算流体动力学分析。作用在手部模型上的测量力被分解为阻力系数和升力系数。对于手部模型,计算时采用攻角为0度、15度、30度、45度、60度、75度和90度,后掠角为0度。结果表明,手指展开较小的模型的阻力系数值高于手指并拢和手指展开较大的模型。可以注意到,在三种手部模型中,攻角为90度时阻力系数值最高。升力系数在攻角范围内呈正弦曲线。对于给定的攻角,三种模型的升力系数值几乎没有差异。这些结果表明,游泳时手指略微展开可以使手部产生更大的推进力。

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