Department of Fluid Mechanics, TU-Dresden, Germany.
J Biomech. 2010 Apr 19;43(6):1111-7. doi: 10.1016/j.jbiomech.2009.12.014. Epub 2010 Jan 27.
Only a limited amount of research has gone into evaluating the contribution made by the upper arm to the propulsion of elite swimmers with an amputation at elbow level. With assistance of computational fluid dynamics (CFD) modelling, the swimming technique of competitive arm amputee swimmers can be assessed through numerical simulations which test the effect of various parameters on the effectiveness of the swimming propulsion. This numerical study investigates the effect of body roll amplitude and of upper arm rotation speed on the propulsion of an arm amputee swimmer, at different mean swimming speeds. Various test cases are simulated resulting in a thorough analysis of the complex body/fluid interaction with a detailed quantitative assessment of the effect of the variation of each parameter on the arm propulsion. It is found that a body roll movement with an amplitude of 45 degrees enhances greatly the propulsive contribution from the upper arm with an increase of about 70% in the propulsive force compared to the no roll condition. An increase in the angular velocity of the upper arm also leads to a concomitant increase in the propulsive forces produced by the arm. Such results have direct implications for competitive arm amputee front crawl swimmers and for those who coach them. One important message that emerges in this present work is that there exists, for any given swimming speed, a minimum angular velocity at which the upper arm must be rotated to generate effective propulsion. Below this velocity, the upper arm will experience a net resistive drag force which adversely affects swimming performance.
仅有少量研究致力于评估在上臂截肢至肘部水平的精英游泳运动员的推进力中,上臂的贡献。借助计算流体动力学 (CFD) 建模,可以通过数值模拟评估竞技手臂截肢游泳运动员的游泳技术,这些模拟测试各种参数对游泳推进效果的影响。这项数值研究调查了体滚幅度和上臂旋转速度对不同平均游泳速度下手臂截肢游泳运动员推进力的影响。模拟了各种测试情况,对复杂的身体/流体相互作用进行了全面分析,并详细定量评估了每个参数变化对手臂推进力的影响。结果发现,体滚幅度为 45 度的体滚运动大大增强了上臂的推进贡献,与无体滚情况相比,推进力增加了约 70%。上臂角速度的增加也会导致手臂产生的推进力相应增加。这些结果对竞技手臂截肢的爬泳运动员和指导他们的教练有直接影响。这项工作中得出的一个重要结论是,对于任何给定的游泳速度,都存在一个最小角速度,上臂必须旋转到这个角速度才能产生有效的推进力。低于这个速度,上臂将经历净阻力拖曳力,这会对游泳表现产生不利影响。