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Study on Capacity for Exclusive Triple Left-Turn Lane with Outside Trap Lane at Signalized Intersections

机译:信号交叉口带外部陷阱车道的专用三重左转车道通行能力研究

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Based on the survey data of three signalized intersections with exclusive triple left-turn lane and with outside trap lane in Beijing, traffic flow characteristics of left-turns are studied by using statistical methods. It shows that the discharge headway and saturation flow rate of exclusive triple left-turn lane with outside trap lane divides into two stages when the discharge time of vehicles in the left-turn bay is less than the left-turn green time. This problem is uncharted in the Highway Capacity Manual (HCM). This research analyzes the effects of relationship between the length of left-turn bay and green time on the left-turn capacity. A theoretic model for left-turn capacity is developed by considering this characteristic. The developed capacity model will be validated on the basis of VIS SIM simulations of a real-world signalized intersection. And the results demonstrate that the proposed capacity models well estimate the left-turn capacity at signalized intersections in the case, which the length of left-turn bay and green time is not well optimized and well reflect the capacity loss due to the transitional area bottleneck.
机译:基于北京市三个具有专用三折左转车道和带外陷阱车道的信号交叉口的调查数据,采用统计方法研究了左转弯的交通流特征。结果表明,当左转车道内车辆的出行时间小于左转绿灯时间时,排外车道的专用三重左转车道的排放时程和饱和流量分为两个阶段。 《高速公路通行能力手册》(HCM)中未阐明此问题。本研究分析了左转湾长度与绿化时间之间的关系对左转容量的影响。考虑到该特性,建立了左转弯能力的理论模型。所开发的容量模型将基于真实世界中信号交叉口的VIS SIM仿真进行验证。结果表明,所提出的通行能力模型能够很好地估计信号交叉口的左转通行能力,而左转行道的长度和绿化时间并未得到最佳优化,不能很好地反映过渡区域瓶颈导致的通行能力损失。 。

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