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自由泳转身水下流线型滑行和踢腿技术系留模拟期间的合力。

Net forces during tethered simulation of underwater streamlined gliding and kicking techniques of the freestyle turn.

作者信息

Lyttle A D, Blanksby B A, Elliott B C, Lloyd D G

机构信息

Department of Human Movement and Exercise Science, The University of Western Australia, Nedlands, Perth, Australia.

出版信息

J Sports Sci. 2000 Oct;18(10):801-7. doi: 10.1080/026404100419856.

Abstract

We assessed the net forces created when towing swimmers while gliding and kicking underwater to establish an appropriate speed for initiating underwater kicking, and the most effective gliding position and kicking technique to be applied after a turn. Sixteen experienced male swimmers of similar body shape were towed by a motorized winch and pulley system. A load cell measured net force (propulsive force - drag force) at speeds of 1.6, 1.9, 2.2, 2.5 and 3.1 m x s(-1). At each speed, the swimmers performed a prone streamline glide, a lateral streamline glide, a prone freestyle kick, a prone dolphin kick and a lateral dolphin kick. A two-way repeated-measures analysis of variance revealed significant differences between the gliding and kicking conditions at different speeds. The results demonstrated an optimal range of speeds (1.9 to 2.2 m x s(-1)) at which to begin underwater kicking to prevent energy loss from excessive active drag. No significant differences were found between the prone and lateral streamline glide positions or between the three underwater kicking techniques. Therefore, there appears to be no significant advantage in using one streamlining technique over another or in using one kicking style over another.

摘要

我们评估了在水下滑行和踢水时拖曳游泳者所产生的合力,以确定启动水下踢水的合适速度,以及转弯后应用的最有效的滑行姿势和踢水技术。16名体型相似的有经验的男性游泳者由机动绞盘和滑轮系统拖曳。一个测力传感器在1.6、1.9、2.2、2.5和3.1米每秒的速度下测量合力(推进力 - 阻力)。在每个速度下,游泳者分别进行俯卧流线型滑行、侧卧流线型滑行、俯卧自由泳踢水、俯卧海豚式踢水和侧卧海豚式踢水。双向重复测量方差分析显示不同速度下的滑行和踢水条件之间存在显著差异。结果表明,存在一个最佳速度范围(1.9至2.2米每秒),在此速度范围内开始水下踢水可防止因过度主动阻力而造成能量损失。在俯卧和侧卧流线型滑行姿势之间或三种水下踢水技术之间未发现显著差异。因此,使用一种流线型技术而非另一种,或使用一种踢水方式而非另一种,似乎没有显著优势。

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