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An evaluation of the performance and cost-effectiveness of pavement sections containing open-graded base courses.

机译:对包含开放等级基础课程的人行道的性能和成本效益的评估。

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摘要

Moisture induced distresses have been the prevalent distress type affecting the deterioration of both asphalt and concrete pavement sections. While various surface techniques have been employed over the years to minimize the ingress of moisture into the pavement structural sections, subsurface drainage components like open-graded base courses remain the best alternative in minimizing the time the pavement structural sections are exposed to saturated conditions. This research therefore focuses on assessing the performance and cost-effectiveness of pavement sections containing both treated and untreated open-graded aggregate base materials.;Three common roadway aggregates comprising of two virgin aggregates and one recycled aggregate were investigated using four open-ended gradations and two binder types. Laboratory tests were conducted to determine the hydraulic, mechanical and durability characteristics of treated and untreated open-graded mixes made from these three aggregate types. Results of the experimental program show that for the same gradation and mix design types, limestone samples have the greatest drainage capacity, stability to traffic loads and resistance to degradation from environmental conditions like freeze-thaw. However, depending on the gradation and mix design used, all three aggregate types namely limestone, natural gravel and recycled concrete can meet the minimum coefficient of hydraulic conductivity required for good drainage in most pavements. Tests results for both asphalt and cement treated open-graded samples indicate that a percent air void content within the range of 15-25 will produce a treated open-graded base course with sufficient drainage capacity and also long term stability under both traffic and environmental loads.;Using the new Mechanistic and Empirical Design Guide software, computer simulations of pavement performance were conducted on pavement sections containing these open-graded base aggregate base materials to determine how the MEPDG predicted pavement performance is sensitive to drainage. Using three truck traffic levels and four climatic regions, results of the computer simulations indicate that the predicted performance was not sensitive to the drainage characteristics of the open-graded base course.;Based on the result of the MEPDG predicted pavement performance, the cost-effectiveness of the pavement sections with open-graded base was computed on the assumption that the increase service life experienced by these sections was attributed to the positive effects of subsurface drainage. The two cost analyses used gave two contrasting results with the one indicating that the inclusion of open-graded base courses can lead to substantial savings.
机译:水分引起的窘迫已经成为影响沥青路面和混凝土路面截面恶化的普遍窘迫类型。尽管多年来采用了各种地面技术来尽量减少水分进入路面结构部分,但地下排水组件(如开放级基层)仍是减少路面结构部分暴露于饱和条件下时间的最佳选择。因此,本研究着重于评估包含已处理和未处理的开放级骨料基层的路面的性能和成本效益。;使用四个开放式级联对三种常见的道路骨料,包括两种原始骨料和一种再生骨料进行了研究,以及两种粘合剂类型。进行了实验室测试,以确定由这三种集料制成的已处理和未处理的开放级混合料的水力,机械和耐久性能。实验程序的结果表明,对于相同的等级和混合设计类型,石灰石样品具有最大的排水能力,对交通负荷的稳定性以及对诸如冻融等环境条件的抵抗力。但是,根据所使用的等级和混合料设计,所有三种骨料类型(石灰石,天然碎石和再生混凝土)都可以满足大多数路面良好排水所需的最小水力传导系数。沥青和水泥处理的开放级样品的测试结果表明,空隙率百分比在15-25范围内将产生处理后的开放级基础层,具有足够的排水能力,并且在交通和环境负荷下均具有长期稳定性使用新的《机械和经验设计指南》软件,在包含这些开放级基础集料基础材料的路面部分上进行了路面性能的计算机模拟,以确定MEPDG预测的路面性能如何对排水敏感。使用三个卡车交通水平和四个气候区域,计算机模拟结果表明,预测性能对开放式基层道路的排水特征不敏感。;基于MEPDG预测路面性能的结果,成本为在假定这些断面所增加的使用寿命归因于地下排水的积极影响这一假设的基础上,计算了具有开放等级基层的路面断面的有效性。所使用的两种成本分析给出了两个对比结果,其中一个结果表明,包括开放等级的基础课程可以带来可观的节省。

著录项

  • 作者

    Koroma, Abdul A.;

  • 作者单位

    Michigan Technological University.;

  • 授予单位 Michigan Technological University.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 279 p.
  • 总页数 279
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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