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Unsteady flow phenomena in human undulatory swimming: a numerical approach

机译:人类波动游泳中的非稳态流动现象:一种数值方法

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摘要

The undulatory underwater sequence is one of the most important phases in competitive swimming. An understanding of the recurrent vortex dynamics around the human body and their generation could therefore be used to improve swimming techniques. In order to produce a dynamic model, we applied human joint kinematics to three-dimensional (3D) body scans of a female swimmer. The flow around this dynamic model was then calculated using computational fluid dynamics with the aid of moving 3D meshes. Evaluation of the numerical results delivered by the various motion cycles identified characteristic vortex structures for each of the cycles, which exhibited increasing intensity and drag influence. At maximum thrust, drag forces appear to be 12 times higher than those of a passive gliding swimmer. As far as we know, this is the first disclosure of vortex rings merging into vortex tubes in the wake after vortex recapturing. All unsteady structures were visualized using a modified Q-criterion also incorporated into our methods. At the very least, our approach is likely to be suited to further studies examining swimmers engaging in undulatory swimming during training or competition.
机译:起伏的水下运动是竞技游泳中最重要的阶段之一。因此,对人体周围反复涡流动力学及其产生的理解可以用于改进游泳技术。为了生成动态模型,我们将人体关节运动学应用于女性游泳者的三维(3D)身体扫描。然后,借助运动的3D网格,使用计算流体动力学来计算围绕此动力学模型的流量。对各种运动周期传递的数值结果的评估确定了每个周期的特征涡结构,这些涡结构表现出越来越大的强度和阻力影响。在最大推力下,阻力似乎是被动滑行游泳者的12倍。据我们所知,这是涡流重新捕获后尾流中涡流环合并到涡流管中的第一个公开内容。所有不稳定的结构都使用修改后的Q标准进行可视化,该标准也已纳入我们的方法中。至少,我们的方法很可能适合于进一步研究,以研究在训练或比赛期间从事波动性游泳的游泳者。

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