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踏板驱动水运工具的运动能量平衡

Energy balance of locomotion with pedal-driven watercraft.

作者信息

Zamparo Paola, Carignani Giuseppe, Plaino Luca, Sgalmuzzo Barbara, Capelli Carlo

机构信息

Corso di Laurea in Scienze Motorie, Università di Udine, Gemona del Friuli, Udine, Italy.

出版信息

J Sports Sci. 2008 Jan 1;26(1):75-81. doi: 10.1080/02640410701305420.

Abstract

In this study, we examined the mechanics and energetics of locomotion with a paddle-wheel boat and a water bike. Power output (Wtot) was measured directly on the water bike by means of an instrumented chain-ring. The simultaneous assessment of oxygen uptake (VO2) allowed the computation of the "overall" efficiency of locomotion (etao = Wtot/VO2). Mean etao was 0.27 (s = 0.02), which was unaffected by the speed, and was assumed to be the same for the two boats as both are semi-recumbent bicycles. For the paddle-wheel boat, Wtot was then obtained from etao and measures of VO2. The power to overcome (passive) drag was calculated as Wd = D x v (where D is the force measured by means of a load cell when towing the boats at given speeds). Propelling efficiency was calculated as etap = Wd/Wtot, which was lower with the paddle-wheel boat (mean 0.35, s = 0.01) than with the water bike (mean 0.57, s = 0.01). The observed differences in etap and Wd explain why at the highest speed tested (approximately 3 m s(-1), the energy required to cover a unit distance with the water bike is similar to that required to move the paddle-wheel boat at 1.3 m s-1).

摘要

在本研究中,我们使用明轮船和水上自行车研究了运动的力学和能量学。通过安装仪器的链轮直接测量水上自行车的功率输出(Wtot)。同时评估摄氧量(VO2)可计算运动的“总体”效率(etao = Wtot/VO2)。平均etao为0.27(s = 0.02),不受速度影响,并且由于两艘船都是半躺式自行车,因此假定两者相同。对于明轮船,然后从etao和VO2测量值中获得Wtot。克服(被动)阻力的功率计算为Wd = D x v(其中D是在给定速度下拖船时通过称重传感器测量的力)。推进效率计算为etap = Wd/Wtot,明轮船的推进效率(平均0.35,s = 0.01)低于水上自行车(平均0.57,s = 0.01)。观察到的etap和Wd差异解释了为什么在测试的最高速度下(约3 m s(-1)),使用水上自行车覆盖单位距离所需的能量与以1.3 m s-1移动明轮船所需的能量相似。

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