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高山滑雪中的 carving 动作动力学。I. 基本离心摆。

Dynamics of carving runs in alpine skiing. I. The basic centrifugal pendulum.

机构信息

Department of Applied Mathematics, The University of Leeds, Leeds, UK.

出版信息

Sports Biomech. 2022 Sep;21(8):890-911. doi: 10.1080/14763141.2019.1710559. Epub 2020 Feb 5.

DOI:10.1080/14763141.2019.1710559
PMID:32024423
Abstract

We studied perfect carving turns of alpine skiing using the simple model of an inverted pendulum which is subject to the gravity force and the force mimicking the centrifugal force emerging in the turns. Depending on the turn speed the model describes two different regimes. In the subcritical regime, there exist three equilibrium positions of the pendulum where the total torque applied to the pendulum vanishes-the marginally stable vertical position and two unstable tilted positions on both sides of the vertical. The tilted equilibria correspond to the ski turns executed in perfect balance. The vertical equilibrium corresponds to gliding down the fall line without turns. In the supercritical regime, the tilted equilibria disappear. In addition to the equilibria, the model allows fall-rise solutions, where the pendulum (skier) rises from the ground on one side and hits the ground on the other side, and solutions describing oscillations about the vertical equilibrium. These oscillations correspond to the so-called dynamic skiing where the skier never settles to a balanced position in the turn. Analysis of the available data on World Cup races shows that elite racers ski mostly in the supercritical regime.

摘要

我们研究了高山滑雪的完美转弯动作,使用了一个简单的倒立摆模型,该模型受到重力和离心力的作用。根据转弯速度的不同,模型描述了两种不同的状态。在亚临界状态下,摆存在三个平衡位置,此时施加在摆上的总扭矩为零——即临界稳定的垂直位置和垂直位置两侧的两个不稳定倾斜位置。倾斜平衡对应于完美平衡执行的滑雪转弯。垂直平衡对应于无转弯沿下降线滑行。在超临界状态下,倾斜平衡消失。除了平衡位置,模型还允许出现跌落-上升解,其中摆(滑雪者)从一侧上升到地面,然后在另一侧撞击地面,以及描述关于垂直平衡的振荡解。这些振荡对应于所谓的动态滑雪,其中滑雪者在转弯时从未稳定在平衡位置。对世界杯比赛中可用数据的分析表明,精英选手大多在超临界状态下滑雪。

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