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Risk analysis and reliability improvement of mechanistic-empirical pavement design.

机译:机械-经验路面设计的风险分析和可靠性改进。

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摘要

Reliability used in the Mechanistic Empirical Pavement Design Guide (MEPDG) is a congregated indicator defined as the probability that each of the key distress types and smoothness will be less than a selected critical level over the design period. For such a complex system as the MEPDG which does not have closed-form design equations, classic reliability methods are not applicable. A robust reliability analysis can rely on Monte Carlo Simulation (MCS). The ultimate goal of this study was to improve the reliability model of the MEPDG using surrogate modeling techniques and Monte Carlo simulation.;To achieve this goal, four tasks were accomplished in this research. First, local calibration using 38 pavement sections was completed to reduce the system bias and dispersion of the nationally calibrated MEPDG. Second, uncertainty and risk in the MEPDG were identified using Hierarchical Holographic Modeling (HHM). To determine the critical factors affecting pavement performance, this study applied not only the traditional sensitivity analysis method but also the risk assessment method using the Analytic Hierarchy Process (AHP). Third, response surface models were built to provide a rapid solution of distress prediction for alligator cracking, rutting and smoothness. Fourth, a new reliability model based on Monte Carlo Simulation was proposed. Using surrogate models, 10,000 Monte Carlo simulations were calculated in minutes to develop the output ensemble, on which the predicted distresses at any reliability level were readily available. The method including all data and algorithms was packed in a user friendly software tool named ReliME..;Comparison between the AASHTO 1993 Guide, the MEPDG and ReliME was presented in three case studies. It was found that the smoothness model in MEPDG had an extremely high level of variation. The product from this study was a consistent reliability model specific to local conditions, construction practices and specifications. This framework also presented the feasibility of adopting Monte Carlo Simulation for reliability analysis in future mechanistic empirical pavement design software.
机译:《机械化经验性路面设计指南》(MEPDG)中使用的可靠性是一个综合指标,定义为在设计期内每种关键遇险类型和光滑度均低于选定的临界水平的概率。对于像MEPDG这样的复杂系统,它没有闭合形式的设计方程式,因此经典的可靠性方法不适用。可靠的可靠性分析可以依靠蒙特卡洛模拟(MCS)。这项研究的最终目标是使用替代建模技术和蒙特卡洛模拟来改进MEPDG的可靠性模型。为了实现这一目标,本研究完成了四个任务。首先,完成了使用38个路面部分的局部校准,以减少系统偏差和国家校准的MEPDG的分散。其次,使用分层全息建模(HHM)识别MEPDG中的不确定性和风险。为了确定影响路面性能的关键因素,本研究不仅应用了传统的敏感性分析方法,而且还应用了基于层次分析法(AHP)的风险评估方法。第三,建立了响应面模型,为鳄鱼的开裂,车辙和光滑度提供了一个求救预测的快速解决方案。第四,提出了一种新的基于蒙特卡洛仿真的可靠性模型。使用代理模型,在几分钟内计算了10,000个蒙特卡洛模拟,以开发输出集合,在该集合上可以轻松获得任何可靠性级别的预测遇险情况。该方法包括所有数据和算法,打包在一个名为ReliME ..的用户友好软件工具中;在三个案例研究中介绍了AASHTO 1993 Guide,MEPDG和ReliME之间的比较。发现在MEPDG中的平滑度模型具有极高的变化水平。这项研究得出的产品是针对当地条件,施工实践和规格的一致的可靠性模型。该框架还提出了在未来的机械经验路面设计软件中采用蒙特卡洛模拟进行可靠性分析的可行性。

著录项

  • 作者

    Xiao, Xingqiang Danny.;

  • 作者单位

    University of Arkansas.;

  • 授予单位 University of Arkansas.;
  • 学科 Civil engineering.;Systems science.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 294 p.
  • 总页数 294
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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