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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 >Rolling resistance, vertical load and optimal number of wheels in human-powered vehicle design
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Rolling resistance, vertical load and optimal number of wheels in human-powered vehicle design

机译:人力汽车设计中滚动阻力,垂直载荷和最佳车轮数

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摘要

Even if it makes a smaller contribution than aerodynamic drag, rolling resistance plays a non-negligible role in the efficiency of human-powered vehicles, whether they are designed for daily commuting or to set speed records. The literature, experimental evidence and models show that the rolling resistance coefficient of cycling wheels strongly depends on the supported load, suggesting that the number of wheels and the load distribution could play a role in vehicle design and in road-test data analysis. Starting with an in-depth look at the relationship between a single wheel and overall vehicle rolling resistance coefficients, an analysis is proposed and discussed with the aim of minimizing the rolling resistance of a vehicle. Finally, a parametric surface response model for rolling resistance is obtained as a function of wheel size and the number of wheels. The overall analysis overturns the popular assumption according to which the more wheels, the more rolling resistance', at least according to a strict definition of the phenomenon.
机译:即使它的贡献比空气动力学阻力较小,滚动阻力也在人力动力车辆的效率中起着不可忽略的作用,无论它们是为每日通勤还是设定速度记录。文献,实验证据和模型表明,循环轮的滚动电阻系数强烈取决于支撑的负荷,表明车轮数量和负载分布可能在车辆设计和道路测试数据分析中发挥作用。从深度看一轮和整体车辆滚动电阻系数之间的关系,提出了一种分析,并讨论了最小化车辆的滚动阻力。最后,获得用于滚动阻力的参数表面响应模型作为车轮尺寸和车轮数的函数。整体分析越过了根据哪个轮子,滚动阻力的流行假设越过,至少根据该现象的严格定义。

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