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使用平滑粒子流体动力学模拟海豚踢游泳。

Simulations of dolphin kick swimming using smoothed particle hydrodynamics.

机构信息

Mathematics, Informatics & Statistics, CSIRO, Gate 5 Normanby Rd., Clayton, VIC 3168, Australia.

出版信息

Hum Mov Sci. 2012 Jun;31(3):604-19. doi: 10.1016/j.humov.2011.06.008. Epub 2011 Aug 12.

Abstract

In competitive human swimming the submerged dolphin kick stroke (underwater undulatory swimming) is utilized after dives and turns. The optimal dolphin kick has a balance between minimizing drag and maximizing thrust while also minimizing the physical exertion required of the swimmer. In this study laser scans of athletes are used to provide realistic swimmer geometries in a single anatomical pose. These are rigged and animated to closely match side-on video footage. Smoothed Particle Hydrodynamics (SPH) fluid simulations are performed to evaluate variants of this swimming stroke technique. This computational approach provides full temporal and spatial information about the flow moving around the deforming swimmer model. The effects of changes in ankle flexibility and stroke frequency are investigated through a parametric study. The results suggest that the net streamwise force on the swimmer is relatively insensitive to ankle flexibility but is strongly dependent on kick frequency.

摘要

在竞技游泳中,潜水和转身之后会采用海豚式踢腿(水下波动式游泳)。最佳的海豚式踢腿需要在最小化阻力和最大化推力之间取得平衡,同时也将游泳者所需的体力消耗最小化。在这项研究中,使用激光扫描运动员的方式,在单一解剖姿势下提供逼真的运动员几何形状。这些模型经过装配和动画处理,以紧密匹配侧视视频片段。进行光滑粒子流体动力学(SPH)流体模拟,以评估这种游泳技术的各种变体。这种计算方法提供了关于变形游泳模型周围流动的完整时间和空间信息。通过参数研究调查了脚踝灵活性和划频变化的影响。结果表明,游泳者的净流向力对脚踝灵活性的变化相对不敏感,但强烈依赖于踢腿频率。

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