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竞技自由泳的生物力学

Biomechanics of competitive front crawl swimming.

作者信息

Toussaint H M, Beek P J

机构信息

Department of Health Science, Faculty of Human Movement Sciences, Vrije Universiteit, Amsterdam, The Netherlands.

出版信息

Sports Med. 1992 Jan;13(1):8-24. doi: 10.2165/00007256-199213010-00002.

Abstract

Essential performance-determining factors in front crawl swimming can be analysed within a biomechanical framework, in reference to the physiological basis of performance. These factors include: active drag forces, effective propulsive forces, propelling efficiency and power output. The success of a swimmer is determined by the ability to generate propulsive force, while reducing the resistance to forward motion. Although for a given competitive stroke a range of optimal stroking styles may be expected across a sample of swimmers, a common element of technique related to a high performance level is the use of complex sculling motions of the hands to generate especially lift forces. By changing the orientation of the hand the propulsive force acting on the hand is aimed successfully in the direction of motion. Furthermore, the swimming velocity (v) is related to drag (A), power input (Pi, the rate of energy liberation via the aerobic/anaerobic metabolism), the gross efficiency (eg), propelling efficiency (ep), and power output (Po) according to: [formula; see text] Based on the research available at present it is concluded that: (a) drag in groups of elite swimmers homogeneous with respect to swimming technique is determined by anthropometric dimensions; (b) total mechanical power output (Po) is important since improvement in performance is related to increased Po. Furthermore, it shows dramatic changes with training and possibly reflects the size of the 'swimming engine'; (c) propelling efficiency seems to be important since it is much higher in elite swimmers (61%) than in triathletes (44%); and (d) distance per stroke gives a fairly good indication of propelling efficiency and may be used to evaluate individual progress in technical ability.

摘要

在生物力学框架内,参考运动表现的生理基础,可以分析自由泳中决定运动表现的关键因素。这些因素包括:主动阻力、有效推进力、推进效率和功率输出。游泳运动员的成功取决于产生推进力同时减少向前运动阻力的能力。尽管对于给定的竞技泳姿,在一群游泳运动员中可能会有一系列最佳划水方式,但与高水平表现相关的技术共同要素是使用手部复杂的划水动作来产生特别的升力。通过改变手的方向,作用在手上的推进力能成功地指向运动方向。此外,游泳速度(v)与阻力(A)、功率输入(Pi,通过有氧/无氧代谢释放能量的速率)、总效率(eg)、推进效率(ep)和功率输出(Po)的关系如下:[公式;见原文] 根据目前可得的研究得出以下结论:(a)在游泳技术相同的精英游泳运动员群体中,阻力由人体测量尺寸决定;(b)总机械功率输出(Po)很重要,因为运动表现的提高与Po的增加有关。此外,它会随着训练产生显著变化,可能反映了“游泳引擎”的大小;(c)推进效率似乎很重要,因为精英游泳运动员的推进效率(61%)比铁人三项运动员(44%)高得多;(d)每划水距离能较好地反映推进效率,可用于评估个人技术能力的进步。

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