首页> 外文期刊>The Baltic journal of road and bridge engineering >RURAL TWO-LANE TWO-WAY THREE-LEG AND FOUR-LEG STOP-CONTROLLED INTERSECTIONS: PREDICTING ROAD SAFETY EFFECTS
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RURAL TWO-LANE TWO-WAY THREE-LEG AND FOUR-LEG STOP-CONTROLLED INTERSECTIONS: PREDICTING ROAD SAFETY EFFECTS

机译:农村两车道双向三路和四路停车控制交叉口:预测道路安全效果

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摘要

The study focused on grade-level rural two-lane two-way three-leg and two-lane two-way four-leg stop-controlled intersections located in the flat area with a vertical grade of less than 5%. The goal is to calibrate one Safety Performance Function at these intersections by implementing a Generalized Estimating Equation with a binomial distribution and compare to the results with yearly expected crash frequencies by using models mainly refered to the scientific literature. The crash data involved 77 two-lane two-way intersections, of which 25 two-lane two-way three-leg intersections are without a left-turn lane (47 with left-turn lane), 5 two-lane two-way four-leg intersections without a left-turn lane (6 with a left-turn lane). No a right-turn lane is present on the major roads. Explanatory variables used in the Safety Performance Function are the presence or absence of a left-turn lane, mean lane width including approach lane and a left-turn lane width on the major road per travel direction, the number of legs, and the Total Annual Average Daily Traffic entering the intersection. The reliability of the Safety Performance Function was assessed using residuals analysis. A graphic outcome of the Safety Performance Function application has been plotted to easily assess a yearly expected crash frequency by varying the Average Annual Daily Traffic, the number of legs, and the presence or absence of a left-turn lane. The presence of a left-turn lane significantly reduces the yearly expected crash frequency values at intersections.
机译:该研究集中在平地上垂直等级小于5%的等级水平的农村两车道两路三路和两车道两路四路路口控制交叉口。目的是通过实施具有二项式分布的广义估计方程来校准这些交叉口处的一个安全性能函数,并使用主要参考科学文献的模型与具有每年预期碰撞频率的结果进行比较。碰撞数据涉及77个两车道两路交叉口,其中25个两车道两路三腿交叉口没有左转车道(47个有左转车道),5个两车道两路四车道-没有左转车道的路段交叉点(有6个左转车道的路段)。主要道路上没有右转车道。安全绩效功能中使用的解释性变量是是否存在左转车道,每个行进方向上主要道路的平均车道宽度(包括进近车道和左转车道宽度),路段数和年度总和进入交叉路口的平均每日交通量。使用残差分析评估了安全绩效功能的可靠性。已绘制出安全性能功能应用程序的图形结果,以通过改变平均每年的日流量,路段数以及是否存在左转车道来轻松评估年度预期的撞车频率。左转车道的存在大大降低了交叉路口的年度预期撞车频率值。

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