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Energy cost and efficiency of ski mountaineering. A laboratory study.

机译:滑雪登山的能源成本和效率。实验室研究。

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AIM: The purpose of this study is to estimate the energy cost of ski mountaineering at different speeds under laboratory conditions. METHODS: By using roller skis on a motorized treadmill we have estimated the energy cost and biomechanics parameters of ski mountaineering as a function of climbing speed at the gradient of 21%. RESULTS: The metabolic energy spent for unit mass and distance, C, shows a broad minimum of about 10.6+/-0.2 J kg-1m-1 at roughly 3.5 km h-1. In addition we find a size-dependent effect: tall subjects spend less metabolic energy for unit mass and distance than small subjects at the same speed. CONCLUSION: The value of C measured in laboratory agrees with that obtained in the field at the preferred speed. This shows that skiers self select a speed that minimizes their metabolic cost. The dependence of C on the subject's size is explained by a simple model of the skier's dynamics. In addition we have calculated the ratio between mechanical work and metabolic energy, which may give some hints on the efficiency as a function of the speed. It turns out that efficiency increases with the speed up to a maximum located at around 4.5 km/h.
机译:目的:本研究的目的是估计在实验室条件下以不同速度滑雪登山的能源成本。方法:通过在电动跑步机上使用旱冰板,我们估计了滑雪登山的能量成本和生物力学参数,作为爬坡速度的函数,坡度为21%。结果:单位质量和距离 C 所消耗的代谢能在大约 3.5 km h-1 处显示出约 10.6+/-0.2 J kg-1m-1 的广泛最小值。此外,我们发现了一个与大小相关的效应:在相同的速度下,高个子受试者在单位质量和距离上花费的代谢能量比小个子受试者少。结论:在实验室中测得的 C 值与在现场以首选速度获得的 C 值一致。这表明滑雪者自己选择的速度可以最大限度地减少他们的新陈代谢成本。C对被摄体大小的依赖性可以通过一个简单的滑雪者动力学模型来解释。此外,我们还计算了机械功和代谢能之间的比率,这可能会提示效率与速度的函数关系。事实证明,效率随着速度的增加而增加,最高时速约为 4.5 公里/小时。

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