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Operating speed prediction models for horizontal curves on rural four-lane non-freeway highways.

机译:农村四车道非高速公路公路水平曲线的运行速度预测模型。

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摘要

One of the significant weaknesses of the design speed concept is that it uses the design speed of the most restrictive geometric element as the design speed of the entire road. This leads to potential inconsistencies among successive sections of a road. Previous studies documented that a uniform design speed does not guarantee consistency on rural two-lane facilities. It is therefore reasonable to assume that similar inconsistencies could be found on rural four-lane non-freeway highways. The operating speed-based method is popularly used in other countries for examining design consistency. Numerous studies have been completed on rural two-lane highways for predicting operating speeds. However, little is known for rural four-lane non-freeway highways.;This study aims to develop operating speed prediction models for horizontal curves on rural four-lane non-freeway highways using 74 horizontal curves. The data analysis showed that the operating speeds in each direction of travel had no statistical differences. However, the operating speeds on inside and outside lanes were significantly different. On each of the two lanes, the operating speeds at the beginning, middle, and ending points of the curve were statistically the same.;The relationships between operating speed and design speed for inside and outside lanes were different. For the inside lane, the operating speed was statistically equal to the design speed. By contrary, for the outside lane, the operating speed was significantly lower than the design speed. However, the relationships between operating speed and posted speed limit for both inside and outside lanes were similar. It was found that the operating speed was higher than the posted speed limit.;Two models were developed for predicting operating speed, since the operating speeds on inside and outside lanes were different. For the inside lane, the significant factors are: shoulder type, median type, pavement type, approaching section grade, and curve length. For the outside lane, the factors included shoulder type, median type, approaching section grade, curve length, curve radius and presence of approaching curve. These factors indicate that the curve itself does mainly influence the driver's speed choice.;KEYWORDS: Operating Speed, Prediction Model, Horizontal Curve, Rural Four-Lane Non-Freeway Highway, Geometric Feature
机译:设计速度概念的显着弱点之一是,它使用限制性最强的几何元素的设计速度作为整条道路的设计速度。这导致道路的连续部分之间潜在的不一致。先前的研究表明,统一的设计速度不能保证农村两车道设施的一致性。因此,有理由假设在农村四车道的非高速公路公路上可能会发现类似的不一致之处。基于运行速度的方法在其他国家/地区广泛用于检查设计一致性。在农村两车道高速公路上已经完成了许多研究,以预测运行速度。然而,对于农村四车道非高速公路高速公路知之甚少。本研究旨在使用74条水平曲线开发农村四车道非高速公路高速公路的水平曲线运行速度预测模型。数据分析表明,在每个行进方向上的运行速度没有统计学差异。但是,内部和外部车道上的运行速度明显不同。在两条车道中的每条车道上,曲线的起点,中间和终点的运行速度在统计上都是相同的。;内部车道和外部车道的运行速度与设计速度之间的关系是不同的。对于内部车道,操作速度在统计上等于设计速度。相反,对于外侧车道,运行速度明显低于设计速度。但是,内部和外部车道的运行速度和发布的速度限制之间的关系相似。发现运行速度高于公布的速度极限。由于内部和外部车道的运行速度不同,因此开发了两个模型来预测运行速度。对于内部车道,重要因素是:路肩类型,中位类型,路面类型,接近路段坡度和弯道长度。对于外部车道,这些因素包括路肩类型,中位类型,接近路段坡度,弯道长度,弯道半径和靠近弯道的存在。这些因素表明,弯道本身确实主要影响驾驶员的速度选择。关键词:行驶速度,预测模型,水平曲线,农村四车道非高速公路公路,几何特征

著录项

  • 作者

    Gong, Huafeng.;

  • 作者单位

    University of Kentucky.;

  • 授予单位 University of Kentucky.;
  • 学科 Engineering Civil.;Transportation.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 201 p.
  • 总页数 201
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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