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游泳滑行的水动力研究:二维计算流体动力学(CFD)分析。

The Hydrodynamic Study of the Swimming Gliding: a Two-Dimensional Computational Fluid Dynamics (CFD) Analysis.

机构信息

University of Beira Interior. Department of Sport Sciences (UBI, Covilhã. Portugal). ; Research Centre in Sports, Health and Human Development (CIDESD, Portugal).

出版信息

J Hum Kinet. 2011 Sep;29:49-57. doi: 10.2478/v10078-011-0039-4. Epub 2011 Oct 4.

Abstract

Nowadays the underwater gliding after the starts and the turns plays a major role in the overall swimming performance. Hence, minimizing hydrodynamic drag during the underwater phases should be a main aim during swimming. Indeed, there are several postures that swimmers can assume during the underwater gliding, although experimental results were not conclusive concerning the best body position to accomplish this aim. Therefore, the purpose of this study was to analyse the effect in hydrodynamic drag forces of using different body positions during gliding through computational fluid dynamics (CFD) methodology. For this purpose, two-dimensional models of the human body in steady flow conditions were studied. Two-dimensional virtual models had been created: (i) a prone position with the arms extended at the front of the body; (ii) a prone position with the arms placed alongside the trunk; (iii) a lateral position with the arms extended at the front and; (iv) a dorsal position with the arms extended at the front. The drag forces were computed between speeds of 1.6 m/s and 2 m/s in a two-dimensional Fluent(®) analysis. The positions with the arms extended at the front presented lower drag values than the position with the arms aside the trunk. The lateral position was the one in which the drag was lower and seems to be the one that should be adopted during the gliding after starts and turns.

摘要

如今,出发和转身后的水下滑行在整体游泳表现中起着重要作用。因此,在游泳过程中,最小化水下阶段的流体动力阻力应该是主要目标。事实上,游泳者在水下滑行时可以采取几种姿势,尽管关于完成这一目标的最佳身体姿势的实验结果尚无定论。因此,本研究的目的是通过计算流体动力学 (CFD) 方法分析在滑行过程中使用不同身体姿势对流体动力阻力的影响。为此,研究了稳定流动条件下人体的二维模型。研究了二维虚拟模型:(i)手臂伸展在身体前方的俯卧位;(ii)手臂放在躯干旁边的俯卧位;(iii)手臂伸展在前方的侧卧位;(iv)手臂伸展在前方的背卧位。在二维 Fluent(®) 分析中,在 1.6 m/s 和 2 m/s 的速度之间计算了阻力。手臂伸展在前方的姿势比手臂放在躯干旁边的姿势产生的阻力小。侧卧位的阻力最小,似乎是出发和转身后的滑行中应采用的姿势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/264c/3588622/ddce96a7f43a/jhk-29-49f1.jpg

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