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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part P. Journal of Sports Engineering and Technology >Aerodynamic test results of bicycle helmets in different configurations: Towards a responsive design
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Aerodynamic test results of bicycle helmets in different configurations: Towards a responsive design

机译:不同配置的自行车头盔的空气动力学测试结果:朝向响应设计

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摘要

Within the sport of cycling, aerodynamic efficiency is a fundamental criterion for equipment such as bicycle frames, wheels, clothing and helmets. Emerging technologies continually challenge the rules governing the sport as designers, engineers, sports scientists and athletes attempt to gain the edge on their competition. This study compares three-dimensional (3D) printed bicycle helmet prototypes with three commercially available helmets via aerodynamic testing in a wind tunnel. One 3D printed helmet featured a mechanical mechanism allowing two states of ventilation closure to be examined for aerodynamic efficiency, while the other featured electronically adjustable ventilation openings tested at five different states of ventilation closure. Data were collected using an anthropometrically accurate mannequin sitting atop a bicycle in a road-cycling position. The results found that the mechanically controlled prototype offered a 4.1% increase in overall drag experienced by the mannequin with ventilation in the open position compared to the closed position. The electronic prototype showed an increase in drag as ventilation openings increased through the five states, with an overall difference in drag of 3.7% between closed and the maximum opening. These experimental findings indicate that the responsive helmet prototypes can significantly affect the drag force on a cyclist between their closed and open positions and, when understood as being adaptable using sensors and automated controls, may provide new opportunities to modify athlete performance throughout varying stages of training and competition.
机译:在骑自行车的运动中,空气动力学效率是自行车框架,车轮,衣服和头盔等设备的基本标准。新兴技术不断挑战为设计师,工程师,体育科学家和运动员试图获得其竞争的优势的规定。本研究将三维(3D)印刷的自行车头盔原型与三维市售的头盔进行了一种,通过风洞中的空气动力学测试。一台3D印刷头盔采用机械机制,允许两种通风闭合状态进行空气动力学效率,而其他特色的电子可调节通风开口在五种不同的通风闭合状态下测试。使用坐在路循环位置的自行车顶部坐在自行车上的人类逐渐准确的时装模特收集数据。结果发现,与关闭位置相比,机械控制的原型通过在打开位置的通风中具有通风的时装障碍增加4.1%。电子原型显示拖动的增加,因为通风开口通过五个州增加,闭合间隙和最大开口之间的拖动率为3.7%的总体差异。这些实验结果表明,响应式头盔原型可以显着影响骑自行车者之间的循环和打开位置之间的拖曳力,并且当被理解为使用传感器和自动化控制适应时,可以在整个不同培训阶段修改运动员性能的新机会和竞争。

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