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Development of a Longitudinal Cracking Fatigue Damage Model for Jointed Plain Concrete Pavements Using the Principles of Similarity.

机译:基于相似性原理的节理型普通混凝土路面纵向开裂疲劳损伤模型的开发。

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摘要

Mechanistic-empirical (M-E) pavement design computes stresses induced in a concrete slab due to applied traffic and environmental loads, and correlates these stresses to distress levels using empirical correlations. Currently, the Mechanistic-Empirical Pavement Design Guide (MEPDG) is one of the most advanced and prevalent methods of M-E pavement design. While the MEPDG predicts transverse cracking, longitudinal cracking is not predicted, even though longitudinal cracking is commonly observed in jointed plain concrete pavements (JPCPs). In this research, an MEPDG compatible model was developed to predict longitudinal cracking fatigue damage in JPCPs. This modeled adapts the framework of the MEPDG specifically for longitudinal cracking.;In order to develop an M-E longitudinal cracking fatigue damage model, it is necessary to compute stresses at the critical location for longitudinal cracking due to the various traffic and environmental loads to which a pavement could be exposed. The principles of similarity were used to map the original problem into similar space, which drastically reduces the complexity of the problem without introducing any error. To avoid the computational inefficiency associated with embedding a finite element program within the program, neural networks are used for rapid stress solutions. Stresses determined in similar space are converted back into real space for damage computation. Modifications were made to the MEPDG fatigue damage computation process to eliminate simplifying assumptions and to make the procedure applicable to longitudinal cracking.;A study was also conducted to determine characteristics of pavement susceptible to longitudinal cracking based on various parameters. This study made use of the principles of similarity to examine almost all pavements which could be considered in M-E design. By identifying the characteristics of pavements susceptible to longitudinal cracking, engineers can identify pavements for which longitudinal cracking analysis should be conducted. The model and design procedure developed in this research provides the tools needed to conduct such an analysis.
机译:机械-经验(M-E)路面设计计算由于施加的交通和环境载荷而在混凝土板中引起的应力,并使用经验相关性将这些应力与遇险级别相关联。当前,《机械-经验路面设计指南》(MEPDG)是M-E路面设计中最先进,最流行的方法之一。尽管MEPDG预测会出现横向开裂,但纵裂通常不会在接缝的普通混凝土路面(JPCP)中观察到,因此无法预测。在这项研究中,开发了MEPDG兼容模型来预测JPCP中的纵向裂纹疲劳损伤。该模型使MEPDG的框架特别适用于纵向裂纹。为了开发ME纵向裂纹的疲劳损伤模型,由于各种交通和环境负荷,必须计算纵向裂纹的关键位置处的应力。路面可能裸露在外。相似性原理用于将原始问题映射到相似的空间中,从而在不引入任何错误的情况下大大降低了问题的复杂性。为了避免与在程序中嵌入有限元程序相关的计算效率低下,将神经网络用于快速应力解决方案。在相似空间中确定的应力会转换回真实空间,以进行损伤计算。对MEPDG疲劳损伤计算过程进行了修改,以消除简化的假设并使其适用于纵向裂缝。;还进行了一项研究,根据各种参数确定易受纵向裂缝影响的路面特性。这项研究利用相似性原理来检查几乎所有可以在M-E设计中考虑的人行道。通过确定易发生纵向开裂的路面特征,工程师可以确定应进行纵向开裂分析的路面。本研究开发的模型和设计程序提供了进行此类分析所需的工具。

著录项

  • 作者

    Lederle, Rita Elizabeth.;

  • 作者单位

    University of Minnesota.;

  • 授予单位 University of Minnesota.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 231 p.
  • 总页数 231
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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