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A computer simulation model for single-lane roundabouts.

机译:单车道回旋处的计算机仿真模型。

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摘要

During the past three decades, the use of roundabouts has increased throughout the world due to their greater benefits in comparison with intersections controlled by traditional means. Roundabouts are often chosen because they are widely associated with low accident rates, lower construction and operating costs, and reasonable capacities and delay.; In the planning and design of roundabouts, special attention should be given to the movement of pedestrians and bicycles. As a result, there are several guidelines for the design of pedestrian and bicycle treatments at roundabouts that increase the safety of both pedestrians and bicyclists at existing and proposed roundabout locations. Different design guidelines have differing criteria for handling pedestrians and bicyclists at roundabout locations. Although all of the investigated guidelines provide better safety (depending on the traffic conditions at a specific location), their effects on the performance of the roundabout have not been examined yet.; Existing roundabout analysis software packages provide estimates of capacity and performance characteristics. This includes characteristics such as delay, queue lengths, stop rates, effects of heavy vehicles, crash frequencies, and geometric delays, as well as fuel consumption, pollutant emissions and operating costs for roundabouts. None of these software packages, however, are capable of determining the effects of various pedestrian crossing locations, nor the effect of different bicycle treatments on the performance of roundabouts.; The objective of this research is to develop simulation models capable of determining the effect of various pedestrian and bicycle treatments at single-lane roundabouts. To achieve this, four models were developed. The first model simulates a single-lane roundabout without bicycle and pedestrian traffic. The second model simulates a single-lane roundabout with a pedestrian crossing and mixed flow bicyclists. The third model simulates a single-lane roundabout with a combined pedestrian and bicycle crossing, while the fourth model simulates a single-lane roundabout with a pedestrian crossing and a bicycle lane at the outer perimeter of the roundabout for the bicycles. Traffic data was collected at a modern roundabout in Boca Raton, Florida.; The results of this effort show that installing a pedestrian crossing on the roundabout approach will have a negative impact on the entry flow, while the downstream approach will benefit from the newly created gaps by pedestrians. Also, it was concluded that a bicycle lane configuration is more beneficial for all users of the roundabout instead of the mixed flow or combined crossing. Installing the pedestrian crossing at one-car length is more beneficial for pedestrians than two- and three-car lengths. Finally, it was concluded that the effect of the pedestrian crossing on the vehicle queues diminishes as the distance between the crossing and the roundabout increases.
机译:在过去的三十年中,环岛的使用在全世界范围内有所增加,这是因为与传统方式控制的交叉路口相比,环岛具有更大的优势。之所以选择回旋处,是因为回旋处与低事故率,较低的建造和运营成本以及合理的通行能力和延误密切相关。在回旋处的规划和设计中,应特别注意行人和自行车的活动。结果,在回旋处设计了一些行人和自行车处理的准则,这些准则增加了在现有和提议的回旋处的行人和骑自行车者的安全性。对于在回旋处处理行人和自行车的人,不同的设计准则有不同的标准。尽管所有研究过的指南都提供了更好的安全性(取决于特定位置的交通状况),但尚未研究它们对回旋处性能的影响。现有的环岛分析软件包可提供容量和性能特征的估计。这包括延迟,队列长度,停车率,重型车辆的影响,碰撞频率和几何延迟等特征,以及回旋处的油耗,污染物排放和运营成本。但是,这些软件包均无法确定各种人行横道位置的影响,也无法确定不同的自行车处理对回旋处的影响。这项研究的目的是开发能够确定在单车道回旋处各种行人和自行车处理的效果的仿真模型。为此,开发了四个模型。第一个模型模拟没有自行车和行人通行的单车道回旋处。第二个模型模拟了一个带有行人过路处和混合流自行车手的单车道回旋处。第三个模型模拟具有行人和自行车过路处的单车道环形交叉路口,而第四个模型模拟具有行人过路处和在自行车道的外周边处的自行车道的单车道环形交叉路口。交通数据是在佛罗里达州博卡拉顿的一个现代回旋处收集的。这项工作的结果表明,在回旋处设置人行横道将对入口流量产生负面影响,而下游进场将受益于行人新创建的间隙。此外,得出的结论是,自行车道配置对回旋处的所有用户都比混合流或组合交叉路口更有利。对于行人而言,以两辆车和三辆车的长度安装人行横道比行车更有利。最后,得出的结论是,随着人行横道和回旋处之间的距离增加,行人过道对车辆队列的影响逐渐减小。

著录项

  • 作者

    Elbadrawi, Hesham Roshdy.;

  • 作者单位

    Florida International University.;

  • 授予单位 Florida International University.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 126 p.
  • 总页数 126
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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