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Reliability-based condition assessment of existing highway bridges.

机译:现有公路桥梁的基于可靠性的状态评估。

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摘要

Condition assessment and safety verification of existing bridges and decisions as to whether bridge posting is required are addressed through analysis, load testing, or a combination of methods. Bridge rating through structural analysis is by far the most common procedure for rating existing bridges. The American Association of State Highway and Transportation Officials (AASHTO) Manual for Bridge Evaluation (MBE), First Edition permits bridge capacity ratings to be determined through allowable stress rating (ASR), load factor rating (LFR) or load and resistance factor rating (LRFR) the latter method is keyed to the AASHTO LRFD Bridge Design Specifications, which is reliability-based and has been required for the design of new bridges built with federal findings since October, 2007. A survey of current bridge rating practices in the United States has revealed that these three methods may lead to different ratings and posting limits for the same bridge, a situation that carries serious implications with regard to the safety of the public and the economic well-being of communities that may be affected by bridge postings or closures.To address this issue, a research program has been conducted with the overall objective of providing recommendations for improving the process by which the condition of existing bridge structures is assessed. This research required a coordinated program of load testing and finite element analysis of selected bridges in the State of Georgia to gain perspectives on the behavior of older bridges under various load conditions. Structural system reliability assessments of these bridges were conducted and bridge fragilities were developed for purposes of comparison with component reliability benchmarks for new bridges. A reliability-based bridge rating framework was developed, along with a series of recommended improvements to the current bridge rating methods, which facilitate the incorporation of various in situ conditions of existing bridges into the bridge rating process at both component and system levels. This framework permits bridge ratings to be conducted at three levels of increasing complexity to achieve the performance objectives, expressed in the terms of reliability, that are embedded in the LRFR option of the AASHTO Manual of Bridge Evaluation. This research was sponsored by the Georgia Department of Transportation, and has led to a set of Recommended Guidelines for Condition Assessment and Evaluation of Existing Bridges in Georgia.
机译:现有桥梁的状态评估和安全验证以及是否需要桥梁过帐的决策可以通过分析,负载测试或多种方法来解决。迄今为止,通过结构分析对桥梁进行评级是对现有桥梁进行评级的最常见程序。美国国家公路和运输官员协会(AASHTO)桥梁评估手册(MBE),第一版允许通过允许应力等级(ASR),载荷系数等级(LFR)或载荷与阻力系数等级( LRFR)是AASHTO LRFD桥梁设计规范的关键,该规范基于可靠性,自2007年10月起,对于根据联邦调查结果建造的新桥梁的设计一直是必需的。美国当前桥梁评级实践的调查揭示了这三种方法可能导致同一座桥梁的评级和登载限制不同,这种情况对可能受到桥梁登载或关闭影响的公众安全和社区的经济福祉产生严重影响为了解决这个问题,已经进行了一项研究计划,其总体目标是为改进流程提供建议。评估现有桥梁结构的状况。这项研究需要在佐治亚州对选定桥梁进行载荷测试和有限元分析的协调程序,以获取有关各种载荷条件下旧桥梁性能的观点。对这些桥梁进行了结构系统可靠性评估,并开发了桥梁脆弱性,以便与新桥梁的组件可靠性基准进行比较。开发了基于可靠性的桥梁评级框架,并对当前的桥梁评级方法提出了一系列建议的改进,这有助于在组件和系统级别将现有桥梁的各种现场条件纳入桥梁评级过程。该框架允许在三个级别的复杂度不断提高的情况下进行桥梁评级,以实现以可靠性表示的性能目标,这些目标已嵌入AASHTO桥梁评估手册的LRFR选项中。这项研究是由佐治亚州交通部赞助的,并提出了一套佐治亚州现有桥梁状况评估和评估的推荐指南。

著录项

  • 作者

    Wang, Naiyu.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 127 p.
  • 总页数 127
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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