Upper Great Plains Transportation Institute, Dept 2880, North Dakota State University, Fargo, ND, 58108-6050, USA.
Department of Transportation, Logistics, and Finance, Upper Great Plaints Transportation Institute, North Dakota State University, Fargo, ND, 58108-6050, USA.
Accid Anal Prev. 2020 Apr;138:105470. doi: 10.1016/j.aap.2020.105470. Epub 2020 Feb 15.
Highway-rail grade crossings (HRGCs) are where a roadway and railway intersect at the same level. Safety at HRGCs has been identified as a high-priority concern among transportation agencies, but there has been little research on the effects of HRGC geometric parameters on their safety performance. This paper evaluates the effects of HRGC geometric parameters on crash occurrence and severity likelihoods. The competing risk algorithm is selected to simultaneously analyze crash occurrence and severities. Four main HRGC geometric factors, along with other contributors, are investigated at 3,194 public HRGCs in North Dakota. This study focuses primarily on four geometric features of an HRGC: (1) acute crossing angle, (2) number of tracks (indicator of crossing width), (3) the roadway distance between the HRGC and the signalized intersection, and (4) number of highway lanes. Distance to the nearest roadway intersections and highway-railway crossing angles are map-based calculations drawn from geographic information systems (GIS). The findings are: (1) all contributors tested in this study, including highway characteristics, traffic exposures from both railway and highway, and the four geometric features, significantly affect at least one crash severity level; (2) all contributors significantly impact crash frequency except for the distance between crossings and the nearest roadway intersection; and (3) geometric parameters' long-term effects on cumulative probability of crash severity and occurrence over 30 years is also evaluated. Crossings with three main tracks contribute the highest long-term crash probabilities.
公路铁路平交道口(HRGCs)是道路和铁路在同一平面上相交的地方。交通安全机构已经将 HRGCs 的安全性确定为一个高度优先关注的问题,但对于 HRGC 几何参数对其安全性能的影响的研究甚少。本文评估了 HRGC 几何参数对碰撞发生和严重程度的可能性的影响。选择竞争风险算法来同时分析碰撞发生和严重程度。在北达科他州的 3194 个公共 HRGC 中,研究了四个主要的 HRGC 几何因素以及其他因素。本研究主要关注 HRGC 的四个几何特征:(1)锐角交叉角度,(2)轨道数量(交叉宽度的指标),(3)HRGC 与信号交叉口之间的道路距离,以及(4)高速公路车道数量。到最近的道路交叉口的距离和公路铁路交叉口角度是从地理信息系统(GIS)绘制的基于地图的计算。研究结果表明:(1)本研究测试的所有因素,包括公路特征、铁路和公路的交通暴露,以及四个几何特征,至少对一个碰撞严重程度级别有显著影响;(2)除了交叉口和最近的道路交叉口之间的距离外,所有因素都显著影响碰撞频率;(3)还评估了几何参数对 30 多年来碰撞严重程度和发生的累积概率的长期影响。有三个主要轨道的交叉口造成的长期碰撞概率最高。