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Individual Performance Optimization of Elite Cyclists

机译:精英骑自行车者的个人性能优化

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The present work focuses on individual posture optimization with the aim to individually reduce the drag and increase the power output on six elite cylists. In order to be able to quantify the changes in drag, power output and VO2max, wind tunnel tests combined with power output and oxygen intake measurements were carried out on each of the athletes tested. Drag measurements were performed in the large scale wind tunnel at NTNU at a constant wind speed of 14.2m/s using a AMTI high frequency force plate. Simultaneously with the drag measurements, the volume of oxygen intake and the power output generated by the athletes during the test in different positions were acquired respectively with a Metamax II portable analyzer from Cortex Biophysic and a Tacx Bushido cycling rig. The main results show that lowering the handlebar while raising the seat in order to obtain a smaller frontal area and a straighter back, lowers the aerodynamic drag but will possibly affect the volume of oxygen intake. The handlebar repositioning leaded to similar results and it might then be questionable whether it is worth reducing the air resistance if the athlete does not sit as comfortably. In most cases a lower handlebar positioning and a narrower set up of the handlebar resulted in a considerable drag reduction without compromising the volume of oxygen intake. Being the present work a preliminary test, no statistical results are presented but as an overall conclusion, it can be pointed out the need to couple drag force measurements with oxygen intake and power production measurements in order to have a clearer picture of the effectiveness of the wind tunnel testing.
机译:目前的工作侧重于个别姿势优化,旨在单独降低拖动并增加六个精英圆柱体上的功率输出。为了能够量化阻力,功率输出和VO2max的变化,在测试的每个运动员上进行风洞测试与电源输出和氧气进气量进行。在NTNU的大型风隧道中以14.2m / s的恒定风速在大型风隧道中进行拖动测量。同时,随着拖动测量,氧气进气的体积和在不同的位置在测试过程中由所述运动员所产生的功率输出用来自皮质Biophysic和Tacx武士道循环钻机一个METAMAX II便携式分析分别获得的。主要结果表明,在升高座椅的同时降低车把,以获得较小的正面区域和更直的背部,降低了空气动力学阻力,但可能会影响氧气摄入量。把手重新定位率为类似的结果,如果运动员不像舒适地坐在那里,那么它是否值得减少空气阻力。在大多数情况下,较低的车把定位和手柄的较窄设置导致了相当大的阻力,而不会影响氧气量的体积。作为目前的工作初步测试,没有呈现统计结果,而是整体结论,可以指出需要用氧气摄入量和电力生产测量耦合拖曳力测量的需要,以便更清楚地了解其有效性的效果风洞测试。

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