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Design speeds and acceleration characteristics of bicycle traffic for use in planning, design and appraisal

机译:用于规划,设计和评估的自行车交通的设计速度和加速度特性

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摘要

This paper reports the results of a study of a cohort of cyclists to determine their speed and acceleration characteristics relative to gradient and other influencing factors in order to supply data for planners, designers and appraisers of cycle infrastructure schemes. A cohort of everyday cyclists was supplied with a global positioning system device and a heart rate monitor and asked to collect data from their journeys in Leeds, UK.udThe analysis determines the cyclists’ speeds and accelerations at every point on their journey and elevation data, corroborated by mapping information, was used to determine the gradient. Two linear regression models of speed and acceleration were estimated and show that the influence of a downhill gradient on speed is less pronounced than the effect of an uphill gradient. The results indicate an eighty-fifth percentile speed on the flat of 22 kph, and for a downhill gradient of 3%, 25 kph. The power required to cycle has been estimated and shows that cyclists deliver around 150 Watts on the flat, but that this rises to around 250 Watts climbing hills. Mean acceleration on the flat is 0.231 m/s2 and the average power output over the acceleration phase, which is of mean duration 26 seconds, is approximately 120 Watts. Air resistance accounts for approximately 70% of the resistive force when cycling at design speed.udIt is recommended that designers adopt 25 kph as a design speed for gradients less than 3%, but that consideration should be given to design speeds of up to 35 kph for steeper gradients. Free-flow speeds in this range should be used when modelling mode and route choices and in benefit appraisal.
机译:本文报告了一组骑自行车者的研究结果,以确定他们的速度和加速度相对于坡度和其他影响因素的特征,以便为自行车基础设施方案的规划者,设计者和评估者提供数据。一组日常骑自行车的人配备了全球定位系统设备和心率监测器,并被要求从他们在英国利兹的旅途中收集数据。 ud分析确定了骑自行车者在旅途和海拔数据上每个点的速度和加速度由地图信息证实,用于确定梯度。估计了速度和加速度的两个线性回归模型,结果表明,下坡坡度对速度的影响不如上坡坡度的影响明显。结果表明,在22 km / h的平面上有百分之八十五的速度,而在3%的下坡坡度为25 kph时。估计骑自行车所需的功率,表明骑自行车的人在平地上可传递约150瓦的功率,但攀爬到山上时可达到约250瓦。在平台上的平均加速度为0.231 m / s2,并且在加速阶段的平均功率输出(平均持续时间为26秒)约为120瓦。在设计速度下循环时,空气阻力约占阻力的70%。 ud建议设计师将25 kph作为低于3%的坡度时的设计速度,但应考虑将设计速度提高到35 kph用于更陡峭的渐变。在建模模式和路线选择以及效益评估时,应使用此范围内的自由流动速度。

著录项

  • 作者

    Parkin J.; Rotheram J.;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
  • 中图分类

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