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Steady hydrodynamic interaction between human swimmers

机译:游泳者之间的稳定水动力相互作用

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摘要

This study focuses on the hydrodynamic interaction between two or three human swimmers in competitive swimming. Although the swimming performance of a single swimmer has been widely examined, studies on the interaction between multiple competitive swimmers are very rare. Experiments showed evidence that the drag of a swimmer could be modified by the existence of the other adjacent competitors (Chatard & Wilson. 2003 Med. Sci. Sports Exerc. >35, 1176–1181. ()). The following questions arise: (1) what mechanism determines the interaction; (2) which position experiences drag reduction or drag increase; (3) how much can drag be reduced or increased in a formation? According to the authors' knowledge, such questions have not been addressed by any published literature. Therefore, the main purpose of this study is to find the mechanism of the hydrodynamic interaction between human swimmers and to quantify this interactive effect by using a steady potential flow solver. The free-surface effect was fully taken into account in our calculations. We firstly calculated the wave drag of a swimmer swimming solely in an open swimming pool. Then we calculated the wave drag of the same swimmer when he/she swam in the wake region of one or two leading swimmers. The results showed that the hydrodynamic interaction made a significant contribution to the drafter's wave drag. By following a leading swimmer, a drafter at wave-riding positions could save up to 63% of their wave drag at speed of 2.0 m s−1 and lateral separation of 2.0 m. Particularly, when a drafter is following two side-by-side leaders, the drag reduction could even be doubled. To the authors' knowledge, this study is the first to demonstrate that the hydrodynamic interaction between human swimmers can best be described and explained in terms of wave interference effect on the free water surface. When the wave cancellation effect is observed, the wave drag of a drafter could be minimized, and this wave cancellation effect can be achieved only when the drafter is in a wave-riding position.
机译:这项研究的重点是在竞技游泳中两个或三个人类游泳者之间的水动力相互作用。尽管已经广泛检查了单个游泳者的游泳性能,但是很少有关于多个竞技游泳者之间的相互作用的研究。实验表明,游泳者的阻力可以通过其他相邻竞争对手的存在来改变(Chatard&Wilson。2003 Med。Sci。Sports Exerc。> 35 ,1176–1181。())。产生以下问题:(1)哪种机制决定相互作用; (2)哪个位置经历减阻或增阻; (3)编队的阻力可以减少或增加多少?根据作者的知识,任何公开的文献都没有解决这些问题。因此,本研究的主要目的是找到人类游泳者之间水动力相互作用的机理,并通过使用稳定的势能流动求解器来量化这种相互作用的作用。在我们的计算中,充分考虑了自由表面效应。我们首先计算仅在开放式游泳池中游泳的游泳者的波浪阻力。然后,我们计算了同一位游泳者在一位或两名领先游泳者的尾波区游泳时的波浪阻力。结果表明,水动力相互作用对起草机的波浪阻力有很大贡献。通过跟随领先的游泳者,处于波浪起伏位置的起草器可以以2.0 m s -1 的速度和2.0 m的横向间距节省多达63%的波浪阻力。特别是,当起草人跟随两个并排的领导者时,阻力减小甚至可能翻倍。据作者所知,这项研究是第一个证明人类游泳者之间的水动力相互作用可以用对自由水面的波干扰效应来最好地描述和解​​释的研究。当观察到消波效果时,可以使牵伸器的波动阻力最小化,并且仅当牵伸器处于骑行位置时才能实现该消波效果。

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