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Aerodynamics analysis of wheel configurations in Paralympic hand-cycling: A computational study

机译:残亚手术中的轮子配置空气动力学分析:计算研究

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Para-cycling aerodynamics holds additional complexities compared to its able-bodied counterpart. Hand-cycling provides such an example, where three wheels opposed to the two wheels of a traditional bicycle are required. Wheel aerodynamics are therefore even more prevalent in the field of Paralympic hand-cycling. However, there has been little attention devoted to wheel aerodynamics in Paralympic hand-cycling. This study investigates hand-cycling wheel aerodynamics. The optimal wheel selection was investigated from a combination of wheels that represented competitive deep-section spoked wheels and disk wheels. In addition to the various wheel combinations, the spacing between the two rear wheels was varied. A 55 cm rear wheel spacing provided drag reductions of up to 4.7% compared to 70 cm when using rear disk wheels at 0 degrees yaw. Crosswinds were also investigated, and it was shown that a front disk wheel coupled with rear deep-section wheels at 55 cm spacing provided the best aerodynamic drag performance with increasing yaw angle. With this wheel setup, the C D A increased by only 7.7%, between min and max values found at 0 degrees and 15 degrees yaw respectively. (C) 2019 Elsevier Masson SAS. All rights reserved.
机译:与其能够体内对手相比,循环空气动力学持有额外的复杂性。手工循环提供了这样的示例,其中需要三个轮子与传统自行车的两个轮子相对的轮子。因此,在残奥会手中循环的领域更为普遍的车轮空气动力学。然而,在残奥会手术中致力于致力于致力于背轮空气动力学的注意力。本研究调查了手工骑行轮空气动力学。从代表竞争深部辐射轮和盘轮的轮子的组合研究了最佳轮选择。除了各种车轮组合之外,两个后轮之间的间距变化。在0度偏航时使用后磁盘车轮时,55厘米后轮间距为70厘米的拖拉减少可达4.7%。还研究了横盘,并表明,在55cm间距的后深型轮连接的前盘轮提供了具有增加的横摆角的最佳空气动力学阻力性能。通过该车轮设置,C D A增加仅为7.7%,分别在0度和15度偏航时的最小值和最大值之间。 (c)2019年Elsevier Masson SAS。版权所有。

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