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Parameterized Seismic Fragility Assessment and Life-Cycle Analysis of Aging Highway Bridges.

机译:老化公路桥梁的参数化易碎性评估和生命周期分析。

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摘要

The highway bridge infrastructure system within the United States is rapidly deteriorating and a significant percentage of these bridges are approaching the end of their useful service life. Deterioration mechanisms affect the load resisting capacity of critical structural components and render aging highway bridges more vulnerable to earthquakes compared to pristine structures. While past literature has traditionally neglected the simultaneous consideration of seismic and aging threats to highway bridges, a joint fragility assessment framework is needed to evaluate the impact of deterioration mechanisms on bridge vulnerability during earthquakes. This research aims to offer an efficient methodology for accurate estimation of the seismic fragility of aging highway bridges. In addition to aging, which is a predominant threat that affects lifetime seismic reliability, other stressors such as repeated seismic events or simultaneous presence of truck traffic are also incorporated in the seismic fragility analysis.;The impact of deterioration mechanisms on bridge component responses are assessed for a range of exposure conditions following the nonlinear dynamic analysis of three-dimensional high-fidelity finite element aging bridge models. Subsequently, time-dependent fragility curves are developed at the bridge component and system level to assess the probability of structural damage given the earthquake intensity. In addition to highlighting the importance of accounting for deterioration mechanisms, these time-evolving fragility curves are used within an improved seismic loss estimation methodology to aid in efficient channeling of monetary resources for structural retrofit or seismic upgrade. Further, statistical learning methods are employed to derive flexible parameterized fragility models conditioned on earthquake hazard intensity, bridge design parameters, and deterioration affected structural parameters to provide significant improvements over traditional fragility models and aid in efficient estimation of aging bridge vulnerabilities. In order to facilitate bridge management decision making, a methodology is presented to demonstrate the applicability of the proposed multidimensional fragility models to estimate the in-situ aging bridge reliabilities with field-measurement data across a transportation network. Finally, this research proposes frameworks to offer guidance to risk analysts regarding the importance of accounting for supplementary threats stemming from multiple seismic shocks along the service life of the bridge structures and the presence of truck traffic atop the bridge deck during earthquake events.
机译:美国境内的公路桥梁基础设施系统正在迅速恶化,并且这些桥梁中有很大一部分正在接近其使用寿命。与原始结构相比,劣化机制会影响关键结构部件的抗压能力,并使老化的公路桥梁更容易受到地震的影响。虽然过去的文献传统上忽略了同时考虑公路桥梁的地震和老化威胁,但仍需要一个联合的脆弱性评估框架来评估地震期间劣化机制对桥梁易损性的影响。本研究旨在为准确评估老化的公路桥梁的地震脆性提供一种有效的方法。除了老化是影响生命周期地震可靠性的主要威胁之外,地震易损性分析还包括了其他应力源,例如反复地震事件或卡车交通同时存在;评估了劣化机制对桥梁构件响应的影响在三维高保真有限元老化桥模型的非线性动力学分析之后,获得一系列暴露条件。随后,在桥梁构件和系统水平上绘制了随时间变化的脆性曲线,以评估在地震烈度下结构破坏的可能性。除了强调考虑恶化机制的重要性外,这些时间演化的脆弱性曲线还用于改进的地震损失估算方法中,以帮助有效地将金钱资源用于结构改造或地震升级。此外,采用统计学习方法来导出以地震灾害强度,桥梁设计参数和受劣化影响的结构参数为条件的灵活的参数化脆弱性模型,以提供对传统脆弱性模型的显着改进,并有助于有效评估老化的桥梁脆弱性。为了便于桥梁管理决策,提出了一种方法来论证所提出的多维脆弱性模型的适用性,该模型可通过跨运输网络的现场测​​量数据来估计现场老化桥梁的可靠性。最后,本研究提出了一些框架,可为风险分析人员提供指导,说明应对因桥梁结构的使用寿命中多次地震冲击以及地震事件期间桥面上的卡车交通而引起的补充威胁的重要性。

著录项

  • 作者

    Ghosh, Jayadipta.;

  • 作者单位

    Rice University.;

  • 授予单位 Rice University.;
  • 学科 Engineering Civil.;Statistics.;Transportation.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 399 p.
  • 总页数 399
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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