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Incorporating work zone configuration factors into speed-flow and capacity models

机译:将工作区配置因素纳入速度流和容量模型

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摘要

This study aims to develop work zone speed-flow and capacity models, which incorporate work zone configuration factors including the number of work zones, geometrical alignment, work zone speed limit, and work zone length. On the basis of the traffic data from six work zone sites with various work zone configurations, two nonlinear traffic speed and flow models including work zone configuration factors are developed for the uncongested and congested traffic conditions, respectively. A work zone capacity model is proposed on the basis of the two models. The three models can further be used to examine the effects of work zone configuration factors on the speed-flow relationship and capacity at work zones. Results show that traffic speed, traffic flow, and work zone capacity increase with the posted speed limit. Traffic speed under uncongested conditions decreases with the geometric alignment, the number of work zones, work zone length, and heavy vehicle percentage. Under congested conditions, the increase of the number of work zones is found to exhibit a larger negative impact on the traffic flow than the increase of geometric alignment. The number of work zones is also found to have the largest negative impacts on work zone capacity, followed by the geometric alignment. Short work zone length exhibits a relatively minor contribution to increasing work zone capacity. Copyright (c) 2014 John Wiley & Sons, Ltd.
机译:本研究旨在开发工作区速度-流量和容量模型,其中包含工作区配置因素,包括工作区的数量,几何对齐,工作区速度限制和工作区长度。基于来自具有不同工作区配置的六个工作区站点的交通数据,分别针对未拥挤和拥挤的交通状况开发了两个非线性交通速度和流量模型,包括工作区配置因子。在这两个模型的基础上,提出了一个工作区容量模型。这三个模型可以进一步用于检查工作区配置因素对工作区速度-流量关系和容量的影响。结果表明,交通速度,交通流量和工作区容量随张贴的速度限制而增加。在不拥挤的情况下,行车速度会随着几何对齐方式,工作区数量,工作区长度和重型车辆百分比而降低。在拥挤的条件下,发现工作区数量的增加对交通流量的负面影响大于几何对齐的增加。还发现工作区的数量对工作区容量具有最大的负面影响,其次是几何对齐。较短的工作区长度对增加工作区容量显示出相对较小的贡献。版权所有(c)2014 John Wiley&Sons,Ltd.

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