基于仿真的重型车辆逆向水平弯道设计评价

Q3 Engineering
Evanthia Kazagli, B. Psarianos
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引用次数: 1

摘要

目前的几何设计政策以乘用车作为设计车辆,而卡车的操作和动态特性没有被包括在内或没有得到一致的解决。此外,关键的几何设计参数,如水平曲线半径的确定没有考虑垂直对齐的影响。本研究的目的是研究关键路段,如反向水平弯道与螺旋弯道,是否可以安全地容纳典型的重型车辆。该分析主要集中在农村和郊区的双车道道路上,这些道路的未分割路面产生的事故率最高。利用TruckSim开发的“道路-驾驶员-车辆”仿真系统,分析了车辆对直接环境输入的动态响应,同时计算并绘制了涉及仪表车辆的物理测试可能测量到的同类输出。结果表明,根据几种设计准则实现的水平曲线最小半径不能与允许的等级间隔结合使用,最小半径表必须包含适用等级的限制。否则,根据道路几何形状或更大的半径,必须使用专门的速度限制,以便充分容纳重型车辆。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessment of the design of reverse horizontal curves to accommodate heavy vehicles based on simulation
Current geometric design policies use passenger cars as design vehicles, while truck operational and dynamic characteristics are not included or not addressed consistently. Furthermore, critical geometric design parameters such as horizontal curves radii are determined without consideration of the effect of vertical alignment. The objective of this work is to investigate whether critical road sections such as reverse horizontal curves with spiral curves, can accommodate typical heavy vehicles with safety. The analysis was focused on rural and suburban two-lane roads with undivided pavement that produce the largest accident rates. By means of "road - driver - vehicle" simulation system developed in TruckSim, the vehicle dynamic response to inputs from the immediate environment is analyzed, while same kind of outputs that might be measured with physical tests involving instrumented vehicles are calculated and plotted. Results indicated that horizontal curves minimum radii that are implemented according to several design criteria, can not be used in conjunction with the allowed interval of grades, and that the table of minimum radii must comprehend a limitation for the applicable grade. Otherwise, exclusively speed limits depending on the road geometry or larger radii must be used in order to adequately accommodate heavy vehicles.
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来源期刊
Advances in Transportation Studies
Advances in Transportation Studies Engineering-Safety, Risk, Reliability and Quality
CiteScore
1.00
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