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Slipstreaming in Gravity Powered Sports: Application to Racing Strategy in Ski Cross

机译:重力运动中的滑流:在滑雪越野赛赛车策略中的应用

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摘要

The principles of slipstreaming or drafting are very well known in muscle-powered sports, but unknown in gravity-powered sports. Typical examples of gravity-powered sports, where several athletes are racing against each other, are ski-cross and snowboard-cross. The aim of this research is to investigate the effectiveness and practical applicability of slipstreaming in ski-cross. A glide model consisting of leading and trailing skiers was developed and used with existing aerodynamic drag and lift data sets from wind tunnel tests. Different scenarios were tested as to their effect on slipstreaming, such as variation of speed, skiers' mass, slope angle, air density, and racing posture (high/low tucked position). The higher the trailing skier's inertial force and acceleration is compared to the leading one, the quicker the trailing skier can catch up. Making more ground up on the racing track is related to higher speed, less body mass (of both skiers), flatter slope angle, denser air, and higher racing posture (high tucked position of both skiers). The glide model presented in this research can be used in the future for testing of slope track design, provided that precise dimensions of terrain features are available.
机译:滑流或牵伸的原理在肌肉运动中是众所周知的,但在重力运动中却是未知的。几名运动员互相比赛的重力运动的典型例子是越野滑雪和单板滑雪。这项研究的目的是研究滑流在滑雪越野赛中的有效性和实际适用性。开发了由前,后滑雪者组成的滑行模型,并将其与风洞测试中现有的气动阻力和升力数据集一起使用。测试了它们对滑流的影响的不同场景,例如速度变化,滑雪者质量,倾斜角度,空气密度和赛车姿势(高/低位)。拖曳滑雪者的惯性力和加速度与领先者的惯性力和加速度越高,则追赶滑雪者可以越快地追上。在赛道上获得更大的爬坡率与更高的速度,(两个滑雪者的)体重较小,倾斜角度更平坦,空气更密和更高的比赛姿势(两个滑雪者的high缩姿势)有关。只要可以提供精确的地形特征尺寸,此研究中提供的滑行模型就可以在将来用于测试坡道设计。

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