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Analytical Procedures for Estimating Capacity of Freeway Weaving, Merge, and Diverge Sections

机译:估算高速公路交织,合并和分散路段的通行能力的分析程序

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摘要

The paper identifies a total of 34 different weaving section configurations that are modeled while operating at capacity using the INTEGRATION software for a wide range of weaving section lengths and travel demand distributions. Subsequently, the simulation results are utilized to develop analytical procedures for estimating the capacity of Type A, B, and C weaving sections. The proposed procedures overcome the shortcomings of the 2000 Highway Capacity Manual (HCM) procedures by considering short (less than 150 m) in addition to long weaving section lengths, by accounting for the source and distribution of weaving flow, and by ensuring that the capacity of a weaving section reverts to basic freeway capacity when the volume ratio is zero (no weaving flows) regardless of the weaving section length. The model can also estimate the capacity of merge and diverge sections at the appropriate boundary conditions. The paper demonstrates that the proposed model capacity estimates are consistent with field data while the HCM procedures tend to overestimate weaving section capacities significantly (exceeding 100%).
机译:本文确定了总共34种不同的织造区配置,这些配置在使用INTEGRATION软件以满负荷运行的情况下建模,适用于各种织造区长度和行程需求分布。随后,利用仿真结果来开发分析程序,以估算A,B和C型织造区的产能。拟议的程序克服了2000年公路通行能力手册(HCM)程序的缺点,除了考虑到较长的织造段长度之外,还考虑了短的(小于150 m),考虑了织造流的来源和分布,并通过确保容量当体积比为零(无织造流量)时,无论织造段的长度如何,织造段的宽度都会恢复为基本高速公路通行能力。该模型还可以估计在适当边界条件下合并和发散部分的容量。本文表明,建议的模型容量估算值与现场数据一致,而HCM程序往往会高估织造区的容量(超过100%)。

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