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新的同步和密尔沃基 B 互通式立交与现有设计的安全性分析比较。

Safety analysis of the new synchronized and milwaukee B interchanges in comparison to existing designs.

机构信息

Graduate Research Assistant, Department of Civil and Environmental Engineering, Wayne State University, 5050 Anthony Wayne Dr, Detroit, MI 48331, United States.

State Traffic Management Engineer, Mobility and Safety Division, North Carolina Department of Transportation, 1561 Mail Service Center, Raleigh, NC 27699-1561, United States.

出版信息

Accid Anal Prev. 2017 Dec;109:29-35. doi: 10.1016/j.aap.2017.09.026. Epub 2017 Oct 7.

Abstract

Interchanges have high crash rates and large impacts on traffic operations. The main objective of this research is to analyze the safety performance of two new interchanges, the synchronized interchange and the Milwaukee B interchange. The primary method of study was microscopic simulation modeling using the Surrogate Safety Assessment Model (SSAM) program to estimate the quantity and type of conflicting interactions in each interchange. A comprehensive series of simulation scenarios were considered to include different conditions of traffic volumes, traffic turning ratios, traffic distribution, and heavy vehicles percentages. Afterward, outcomes were analyzed with two-way Analyses of Variance (ANOVAs) to compare the mean values of conflicts. Based on the results, the diverging diamond interchange (DDI) and Milwaukee B were the safest designs regarding observed conflicting interactions in the simulation models; however, the DDI did not seem as reliable from the viewpoint of wrong way movements. The new synchronized interchange, the parclo B, and the Milwaukee A (an existing interchange in Milwaukee, WI) showed the same rate of conflicts. The synchronized interchange may be advantageous because it was estimated to reduce the severity of crashes due to fewer crossing conflicts, a lower speed of conflicts, and a higher time to collision. The conventional diamond was the most dangerous design based on our measures. The DDI and the synchronized interchange look like plausible substitutes for reconstructing an unsafe diamond interchange due to the similarities in their required space.

摘要

路口转换区的碰撞事故发生率较高,对交通运行影响较大。本研究的主要目的是分析两种新型路口转换区——同步式路口转换区和密尔沃基 B 型路口转换区的安全性能。主要的研究方法是使用替代安全评估模型(SSAM)程序进行微观仿真建模,以估计每个路口转换区的冲突交互数量和类型。综合考虑了一系列仿真场景,包括不同的交通量、交通转向比例、交通分布和大货车比例条件。然后,使用双向方差分析(ANOVA)对结果进行分析,以比较冲突的平均值。根据结果,在观察到的仿真模型中的冲突交互方面,菱形-半苜蓿叶式(DDI)和密尔沃基 B 型路口转换区的设计是最安全的;然而,从错误行驶的角度来看,DDI 似乎并不那么可靠。新型同步式路口转换区、苜蓿叶式 B 型和密尔沃基 A 型(密尔沃基的一个现有路口)的冲突发生率相同。同步式路口转换区可能具有优势,因为据估计,由于交叉冲突减少、冲突速度降低以及碰撞时间增加,其碰撞严重程度会降低。根据我们的措施,传统菱形路口转换区的设计是最危险的。DDI 和同步式路口转换区看起来像是对不安全菱形路口转换区进行重建的合理替代方案,因为它们所需的空间相似。

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