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Determinations of performance and mechanical efficiency in nordic skiing.

机译:确定北欧滑雪的性能和机械效率。

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摘要

Determinants of performance and mechanical efficiency of effort have been made on a group of ten male nordic skiers, all participants in the University of Toronto ski-team. The oxygen intake at the maximum attainable speed of skiing on a level course averaged 89.6 percent of the maximum oxygen intake observed during uphill treadmill running; the latter (average 63.9 ml.kg-1 min-1) may be compared with values greater than 80 ml.kg1 min-1 for international competitors. Maximum heart rates and respiratory gas exchange ratios were generally lower during skiing than running, and it is suggested that the maximum oxygen intake attained during skiing is limited by the individual's skill. In support of this the more experienced skiers were able to reach close to 100 percent of the treadmill maximum oxygen intake during level skiing. A multiple regression analysis indicated that the skiing speed sustained over a one-hour period was related to experience of skiing, maximum oxygen intake, and the percentage of body fat. Assuming a dynamic friction coefficient of 0.075, a drag area of 0.7 m2 and a drag coefficient of 1.0, the gross mechanical efficiency of the university-class skier averaged a little under 20 percent, with a net efficiency of 21.3 percent.
机译:决定性能的因素和努力的机械效率是由一组十名男性北欧滑雪者组成的,所有参与者均为多伦多大学滑雪队的参与者。在水平跑步过程中,在可达到的最大滑雪速度下,氧气的摄入量平均为在上坡跑步机运行期间观察到的最大氧气摄入量的89.6%;后者(平均63.9 ml.kg-1 min-1)可以与国际竞争对手大于80 ml.kg1 min-1的值进行比较。滑雪过程中的最大心率和呼吸气体交换率通常比跑步时要低,这表明滑雪过程中获得的最大氧气摄入量受到个人技能的限制。为此,经验丰富的滑雪者在平地滑雪过程中可以达到跑步机最大摄氧量的100%。多元回归分析表明,持续一小时的滑雪速度与滑雪经验,最大摄氧量和体脂百分比有关。假设动摩擦系数为0.075,风阻面积为0.7 m2,风阻系数为1.0,则大学级滑雪者的总机械效率平均不到20%,净效率为21.3%。

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