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再探农村双车道公路水平曲率的安全影响

Another look at the safety effects of horizontal curvature on rural two-lane highways.

作者信息

Saleem Taha, Persaud Bhagwant

机构信息

Ryerson University, Department of Civil Engineering 350 Victoria Street, Toronto M5B2K3, Canada.

出版信息

Accid Anal Prev. 2017 Sep;106:149-159. doi: 10.1016/j.aap.2017.04.001. Epub 2017 Jun 13.

Abstract

Crash Modification Factors (CMFs) are used to represent the effects on crashes of changes to highway design elements and are usually obtained from observational studies based on reported crashes. The design element of interest for this paper is horizontal curvature on rural 2-lane highways. The data for this study came from the Washington State database in the Highway Safety Information System (HSIS). Crash prediction models are developed for curve sections on rural 2-lane highway and the tangent sections up- and down-stream of the curve sections. Different negative binomial models were developed for segments on level grades (<3%), moderate grades (3-6%), and steep grades (>6%) to account for the confounding effects of gradient. The relationships between crashes at different traffic volumes and deflection angles are explored to illustrate how to get estimates of CMFs for increases in the minimum radius, considering the effect of increased tangent length for sharper curves, an effect that is overlooked in the Highway Safety Manual CMF, in addition to the effect of gradient. The results of that exploration indicated that even at different design speeds and deflection angles, the CMF estimates for incremental increases in radius lie within the same range, and that the crash reduction rate (CRR) is higher at segments on higher grades compared to the ones on lower grades.

摘要

碰撞修正因子(CMFs)用于表示高速公路设计元素变化对碰撞事故的影响,通常从基于报告的碰撞事故的观测研究中获得。本文关注的设计元素是农村双车道公路的水平曲率。本研究的数据来自公路安全信息系统(HSIS)中的华盛顿州数据库。针对农村双车道公路的曲线段以及曲线段上下游的直线段建立了碰撞预测模型。针对平坡(<3%)、中等坡度(3 - 6%)和陡坡(>6%)路段开发了不同的负二项式模型,以考虑坡度的混杂效应。探讨了不同交通量下碰撞事故与偏转角之间的关系,以说明如何在考虑更急转弯增加切线长度的影响(这一影响在《公路安全手册》的CMF中被忽视)以及坡度影响的情况下,获得最小半径增加时CMF的估计值。该探索结果表明,即使在不同的设计速度和偏转角下,半径增量增加的CMF估计值也在相同范围内,并且与低等级路段相比,高等级路段的碰撞减少率(CRR)更高。

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