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Risk-based approach in highway geometric design.

机译:公路几何设计中基于风险的方法。

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摘要

In current geometric design guides, the highway elements are designed using the deterministic approach. This approach considers below average driver characteristics and vehicle capabilities to produce designs that would satisfy the majority of road users. However, a design following this approach could be conservative and uneconomic since the probability of having simultaneous critical values for all design parameters could be very low. In addition, the current design methods rely on either horizontal or vertical projection of the road alignment, which may cause either underestimation or overestimation of the road supply.;In this research, a comprehensive approach for geometric design was developed based on reliability theory. The approach was applied to the sight distance design basis using the required sight distance (RqSD) as a demand and the distance actually available to drivers (AvSD) as a supply. Both simulation and analytical reliability techniques were used in the analysis. For RqSD calculations, a new approach was developed to account for the continuous change of longitudinal grade, expected loss of friction on horizontal curves, and it considers both deceleration rate and friction coefficient. As for AvSD calculations, both two and three dimensional values were calculated taking advantage of two existing programs based on the finite element technique.;Using Visual Basic.Net programming language, a computer program was developed; namely sight distance evaluation system (SDES). Using SDES, profiles can be generated for RqSD and/or AvSD at pre-determined intervals. At a given road section, RqSD and AvSD distributions can be evaluated to determine the probability of hazard (POH), which reflects the percentage of drivers who may suffer insufficient sight distance. POH profile was further evaluated in a real case study using data from Highway 61, Ontario. The POH values less than 0.05 % have mainly resulted along the entire route except for a few sections that had a maximum POH of 7.45 %. In addition, a reliability-based approach was developed to locate lateral obstructions along three-dimensional alignments using a certain POH. Two design aids were further developed for design and evaluation purposes on 400-m curves and 2H:1V side slope.
机译:在当前的几何设计指南中,使用确定性方法来设计高速公路元素。这种方法考虑了低于平均水平的驾驶员特征和车辆能力,以产生满足大多数道路使用者的设计。但是,遵循此方法的设计可能是保守的,而且不经济,因为所有设计参数同时具有临界值的可能性可能非常低。另外,当前的设计方法依赖于道路路线的水平或垂直投影,这可能导致道路供应量的低估或高估。;在这项研究中,基于可靠性理论开发了一种综合的几何设计方法。该方法应用于视距设计基础,使用所需的视距(RqSD)作为需求,而驾驶员实际可用的距离(AvSD)作为供应。分析中同时使用了仿真和分析可靠性技术。对于RqSD计算,开发了一种新方法来解决纵向坡度的连续变化,水平曲线上的预期摩擦损失,并同时考虑了减速率和摩擦系数。至于AvSD的计算,利用基于有限元技术的两个现有程序来计算二维值和三维值。;使用Visual Basic.Net编程语言,开发了一个计算机程序;即视距评估系统(SDES)。使用SDES,可以以预定的时间间隔为RqSD和/或AvSD生成配置文件。在给定的路段,可以评估RqSD和AvSD分布以确定危险概率(POH),该概率反映了可能遭受视距不足的驾驶员的百分比。使用安大略省61号高速公路的数据在实际案例研究中进一步评估了POH分布图。低于0.05%的POH值主要是沿着整个路线产生的,除了少数几个部分的最大POH为7.45%之外。此外,还开发了一种基于可靠性的方法,以使用某个POH沿三维路线定位横向障碍物。进一步开发了两种设计辅助工具,用于设计和评估400 m曲线和2H:1V边坡。

著录项

  • 作者

    Sarhan, Mohamed.;

  • 作者单位

    Carleton University (Canada).;

  • 授予单位 Carleton University (Canada).;
  • 学科 Engineering Civil.;Transportation.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 200 p.
  • 总页数 200
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;综合运输;
  • 关键词

  • 入库时间 2022-08-17 11:38:55

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