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Evaluation of Safety in Horizontal Curves of Roads Using a Multi-Body Dynamic Simulation Process

机译:使用多体动态仿真过程评估道路水平曲线安全性

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摘要

Road transportation poses one of the significant public health risks. Several contributors and factors strongly link public health and road safety. The design and advancement of higher-quality roads can significantly contribute to safer roads and save lives. In this article, the safety aspect of the roads’ horizontal curves under the standard of the American Association of State Highway Transportation Officials (AASHTO) is evaluated. Several factors, including vehicle weight, vehicle dimensions, longitudinal grades, and vehicle speed in the geometric design of the horizontal curves, are investigated through a multi-body dynamic simulation process. According to the AASHTO, a combination of simple circular and clothoid transition curves with various longitudinal upgrades and downgrades was designed. Three vehicles were used in this simulation, including a sedan, a bus, and a 3-axle truck. The analysis was based on the lateral friction between the tire and the pavement and also the safety margin parameter. The results showed that designers must differentiate between light and heavy vehicles, especially in curves with a high radius. Evaluation of longitudinal grade impacts indicated that the safety margin decreases when the vehicle is entering the curve. Safety margin reduction on the clothoid curve takes place with a lower grade toward the simple circular curve. By increasing the speed, the difference between lateral friction demand obtained from simulation and lateral friction demand proposed by AASHTO grows. The proposed novel methodology can be used for evaluating road safety.
机译:公路运输构成了重要的公共卫生风险之一。几个贡献者和因素强烈关联公共卫生和道路安全。更高质量的道路的设计和进步可以有助于更安全的道路和拯救生命。在本文中,评估了美国国家公路运输官员(AASHTO)标准下的道路水平曲线的安全方面进行了评估。通过多体动态模拟过程研究了几种因素,包括车辆重量,车辆尺寸,纵向等分和车辆速度,在水平曲线的几何设计中进行研究。根据AASHTO,设计了具有各种纵向升级和降级的简单圆形和梭形过渡曲线的组合。在该模拟中使用了三辆车,包括轿车,公共汽车和3轴卡车。该分析基于轮胎和路面之间的横向摩擦以及安全保证金参数。结果表明,设计人员必须区分轻型和重型车辆,特别是在具有高半径的曲线之间。纵向级撞击的评估表明,当车辆进入曲线时,安全裕度降低。梭形曲线上的安全裕度减少,朝向简单的圆形曲线较低。通过增加烟雾提出的模拟和横向摩擦需求所获得的横向摩擦需求之间的差异。拟议的新型方法可以用于评估道路安全性。

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