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Reliability and redundancy of structural systems with application to highway bridges.

机译:结构系统的可靠性和冗余性在公路桥梁中的应用。

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摘要

For over three decades, researchers have been investigating applications of system reliability concepts and techniques in structural design and evaluation. Over the past twelve years, probability-based system redundancy concepts have been introduced and used to check the availability of warning before collapse occurs. System reliability and redundancy are priority topics in the effort to enhance the development of practical methods for safety assessment and safety assurance in structural system evaluation and design. At present, the Load and Resistance Factor Design (LRFD) provisions in most design specifications are based on the so-called level-one safety checking requirements using load factors and strength reduction factors. These requirements are checked at the member or component level only. For this reason, any formulation of this type, based on single component analysis, results in an inappropriate use of limited funds available at all levels for inspection, repair, and rehabilitation of existing structures, and/or design of new structures. Therefore, in spite of significant progress in the development and application of system reliability theory, the requirements for evaluation and design of structural systems have remained incomplete. The main objective of this study is to provide a general framework for consideration of reliability and redundancy of structural systems with application to highway bridges and to identify critical members in structural systems using a system reliability basis. This study presents a system reliability-based framework for assessing structural performance and structural importance of components in a structural system. Both idealized systems, such as series, parallel, and series-parallel systems, and existing highway bridges are used to exemplify the approach. The proposed methodology takes into account the system performance and quantifies the influences of individual components on the overall performance. The importance of a component is defined as the impact of that component on the overall system reliability. Various results concerning importance measures and ranking of individual components in a structural system are presented. The results from detailed reliability analyses of different topologies of a three-member model showed that system reliability could be vastly different from component reliability. Both the system reliability and the system redundancy (defined as the difference between the system reliability and the reliability of the weakest member) depend on various factors such as the failure model assumed [series, parallel, or mixed (series-parallel)], resistance sharing, residual strength, member reliability level, failure mode correlation, and load and strength variabilities, among others. This framework is applied to the safety assessment of highway bridge superstructures which are classified as series-parallel structural systems. The sensitivity of the system reliability to changes in bridge member reliability is quantified, and critical members are identified for existing bridges in Colorado. The results of this study can be applied to the development of importance factors in codified bridge design, and in the selection of maintenance strategies for bridges. In conclusion, it should be mentioned that the introduction of system reliability and redundancy measures in codified bridge evaluation and design is a practical possibility. However, for implementation of these probabilistic measures in bridge codes further research is needed.
机译:三十多年来,研究人员一直在研究系统可靠性概念和技术在结构设计和评估中的应用。在过去的十二年中,基于概率的系统冗余概念已被引入并用于在崩溃发生之前检查警告的可用性。系统可靠性和冗余性是努力增强结构系统评估和设计中安全评估和安全保证的实用方法开发的优先主题。目前,大多数设计规范中的载荷和阻力系数设计(LRFD)规定基于使用载荷系数和强度减小系数的所谓的一级安全检查要求。这些要求仅在成员或组件级别进行检查。因此,任何这种基于单一成分分析的表述都会导致不适当地使用所有级别的有限资金来检查,维修和修复现有结构和/或设计新结构。因此,尽管在系统可靠性理论的发展和应用方面取得了重大进展,但对结构系统的评估和设计的要求仍然不完整。这项研究的主要目的是为考虑结构系统在公路桥梁中的可靠性和冗余性提供一个通用框架,并使用系统可靠性基础确定结构系统中的关键构件。这项研究提出了一个基于系统可靠性的框架,用于评估结构系统中组件的结构性能和结构重要性。两种理想的系统(例如串联,并联和串联-并联系统)和现有的公路桥梁都可作为示例。所提出的方法考虑了系统性能,并量化了各个组件对整体性能的影响。组件的重要性定义为该组件对整体系统可靠性的影响。提出了有关重要性度量和结构系统中各个组件的排名的各种结果。通过对三元模型的不同拓扑进行详细可靠性分析的结果表明,系统可靠性可能与组件可靠性大不相同。系统可靠性和系统冗余(定义为系统可靠性和最弱成员的可靠性之间的差异)都取决于各种因素,例如假设的故障模型[串联,并联或混合(串联-并联)],电阻共享,剩余强度,成员可靠性水平,失效模式相关性以及载荷和强度变异性等。该框架应用于公路桥梁上部结构的安全性评估,该结构被划分为串并联结构系统。量化了系统可靠性对桥梁构件可靠性变化的敏感性,并确定了科罗拉多州现有桥梁的关键构件。这项研究的结果可以应用于重要的因素的发展,在编纂桥梁设计,以及桥梁的维护策略的选择。总之,应该指出的是,在规范化桥梁评估和设计中引入系统可靠性和冗余措施是可行的。然而,为了在桥代码中实施这些概率措施,还需要进一步的研究。

著录项

  • 作者

    Gharaibeh, Emhaidy Saleh.;

  • 作者单位

    University of Colorado at Boulder.;

  • 授予单位 University of Colorado at Boulder.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 271 p.
  • 总页数 271
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

  • 入库时间 2022-08-17 11:48:20

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