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Cyclist Drag in Team Pursuit: Influence of Cyclist Sequence, Stature, and Arm Spacing

机译:骑自行车的人在团队追求中的拖累:骑自行车者的顺序,身材和手臂间距的影响

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摘要

In team pursuit, the drag of a group of cyclists riding in a pace line is dependent on several factors, such as anthropometric characteristics (stature) and position of each cyclist as well as the sequence in which they ride. To increase insight in drag reduction mechanisms, the aerodynamic drag of four cyclists riding in a pace line was investigated, using four different cyclists, and for four different sequences. In addition, each sequence was evaluated for two arm spacings. Instead of conventional field or wind tunnel experiments, a validated numerical approach (computational fluid dynamics) was used to evaluate cyclist drag, where the bicycles were not included in the model. The cyclist drag was clearly dependent on his position in the pace line, where second and subsequent positions experienced a drag reduction up to 40%, compared to an individual cyclist. Individual differences in stature and position on the bicycle led to an intercyclist variation of this drag reduction at a specific position in the sequence, but also to a variation of the total drag of the group for different sequences. A larger drag area for the group was found when riding with wider arm spacing. Such numerical studies on cyclists in a pace line are useful for determining the optimal cyclist sequence for team pursuit.
机译:在团队追求中,一群骑自行车的人的阻力取决于几个因素,例如人体测量学特征(身高),每个骑车者的位置以及骑车顺序。为了增加对减阻机制的了解,研究了四个骑自行车的人在速度线上的空气动力学阻力,使用了四个不同的自行车手,并针对四个不同的序列。另外,评估每个序列的两个臂间距。代替常规的野外或风洞实验,使用了一种经过验证的数值方法(计算流体力学)来评估骑自行车的人的阻力,其中自行车未包括在模型中。骑车人的拖拽显然取决于他在步伐线上的位置,与单个骑车人相比,第二个和后续位置的拖拽减少了40%。自行车身高和位置的个体差异导致骑车人在序列中特定位置的减阻减少,但也导致了不同序列组的总减阻变化。当以较宽的手臂间距骑行时,该组的阻力区域更大。这样的关于骑行者在速度线上的数值研究对于确定团队追求的最佳骑手序列很有用。

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