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Using the power balance model to simulate cross-country skiing on varying terrain

机译:使用功率平衡模型在不同地形上模拟越野滑雪

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摘要

The current study adapts the power balance model to simulate cross-country skiing on varying terrain. We assumed that the skier’s locomotive power at a self-chosen pace is a function of speed, which is impacted by friction, incline, air drag, and mass. An elite male skier’s position along the track during ski skating was simulated and compared with his experimental data. As input values in the model, air drag and friction were estimated from the literature based on the skier’s mass, snow conditions, and speed. We regard the fit as good, since the difference in racing time between simulations and measurements was 2 seconds of the 815 seconds racing time, with acceptable fit both in uphill and downhill terrain. Using this model, we estimated the influence of changes in various factors such as air drag, friction, and body mass on performance. In conclusion, the power balance model with locomotive power as a function of speed was found to be a valid tool for analyzing performance in cross-country skiing.
机译:当前的研究改编了功率平衡模型,以模拟在不同地形上的越野滑雪。我们假设滑雪者以自己选择的速度行驶时的机车功率是速度的函数,速度受摩擦,倾斜,空气阻力和质量的影响。模拟了一个优秀的男性滑雪者在滑冰过程中沿着赛道的位置,并将其与实验数据进行了比较。作为模型中的输入值,根据滑雪者的体重,雪况和速度从文献中估算出空气阻力和摩擦力。我们认为拟合度很好,因为模拟和测量之间的竞赛时间差为815秒竞赛时间的2秒,在上坡和下坡地形中均可接受。使用该模型,我们估计了诸如空气阻力,摩擦力和体重等各种因素的变化对性能的影响。总之,发现机车功率与速度成函数关系的功率平衡模型是分析越野滑雪性能的有效工具。

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