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Field Implementation of Directional Rumble Strips to Deter Wrong-Way Driving on Freeways

机译:现场实施定向隆隆声,阻止在高速公路上驾驶的错误方式

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摘要

This paper presents the field implementation results of directional rumble strips (DRS), a low-cost traffic control device (TCD) designed to deter wrong-way driving (WWD) on freeways. Southbound off-ramps at Exits 208 and 284 on I-65 in Alabama were selected for implementation because they were ranked as high-risk locations by a network screening tool. A previous study developed and tested five DRS designs (A-E) with various configurations (e.g., A1, A2, and so forth). Three patterns (D3, C, and E2) were recommended for field implementation according to the previous test results. Pattern D3 was installed at the off-ramp terminal near the stop bar or yield line. Pattern C was implemented at the segment between the terminal and ramp curve. Pattern E2 was placed on the tangent part before the ramp curve. WWD incidents and distances before and after the implementation were collected using cameras. Field driving tests were conducted to collect sound and vibration data at various speed categories for both right-way (RW) and wrong-way (WW) directions. Before-and-after studies evaluated the effectiveness of DRS patterns in deterring WWD incidents. Sound and vibration analyses quantified the differences between RW and WW drivers' perceptions. Results showed that the number of WWD incidents and average driving distances significantly decreased, by roughly 90% and 85%, respectively, after implementing all three DRS patterns. The results confirmed that WW drivers can perceive elevated sound and vibrations when passing the DRS. A general guideline was developed for implementing three different DRS on freeway off-ramps to deter WWD. (C) 2020 American Society of Civil Engineers.
机译:本文介绍了定向隆隆声条(DRS)的现场实施结果,低成本的交通管制设备(TCD),旨在阻止高速公路上的错误方式驾驶(WWD)。 Alabama I-65的退出208和284的Southbound Off-ramps被选为实施,因为它们被网络筛选工具排名为高风险位置。以前的研究开发并测试了五个DRS设计(A-E),具有各种配置(例如,A1,A2等)。根据先前的测试结果,建议使用三种模式(D3,C和E2)进行现场实施。图案D3安装在止动杆或屈服线附近的Off-Ramp端子。图案C在终端和斜坡曲线之间的段处实现。在斜坡曲线之前将图案E2置于切线部分。使用相机收集实施前后的WWD事件和距离。进行现场驾驶测试,以以右路(RW)和错误方式(WW)方向以各种速度类别收集声音和振动数据。在研究之前评估了DRS模式在阻止WWD事件时的有效性。声音和振动分析量化了RW和WW驱动器的看法之间的差异。结果表明,在实施所有三种DRS模式之后,WWD事件和平均驾驶距离的数量分别显着降低了大约90%和85%。结果证实,在通过DRS时,WW驱动器可以感知升高的声音和振动。开发了一般指导,用于在高速公路越斜坡上实施三种不同的DRS来阻止WWD。 (c)2020年美国土木工程师协会。

著录项

  • 来源
    《Journal of Transportation Engineering》 |2020年第9期|04020090.1-04020090.13|共13页
  • 作者

    Xue Chennan; Zhou Huaguo; Xu Dan;

  • 作者单位

    Auburn Univ Dept Civil Engn 315 Ramsay Hall Auburn AL 36849 USA;

    Auburn Univ Dept Civil Engn 238 Harbert Engn Ctr Auburn AL 36849 USA;

    Auburn Univ Dept Civil Engn 305 Ramsay Hall Auburn AL 36849 USA;

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