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Perfomance-based assessment of existing structures accounting for residual displacements.

机译:对现有结构进行基于性能的评估以解决残余位移。

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摘要

Recent seismic events have highlighted the necessity of demolishing damaged structures due to excessive permanent deformations, even though they did not experience collapse. Moreover, the evaluation of permanent (residual) lateral displacements plays an important role for determining the technical feasibility of retrofitting structures that have been damaged due to earthquake excitation. In addition, an adequate estimation of permanent lateral displacements is important to assess seismic risks from aftershocks events. Thus, an adequate estimation of residual displacement demands that existing structures may experience after earthquake ground shaking should be of primary importance in modern performance-based assessment procedures. For that purpose, this dissertation is aimed at providing further information about residual displacement demands and their dependence on several ground motion and structural features of single-degree-of-freedom (SDOF) and multi-degree-of-freedom (MDOF) systems. In particular, this study proposes simplified probabilistic approaches to estimate residual displacement demands for different seismic hazard levels in the context of recently introduced performance-based methodologies.; In this investigation a special emphasis is given to the evaluation of residual displacement demands, although information about maximum (transient) displacement demands is also provided for reference purposes. Thus, the first part of this investigation reports comprehensive statistical studies to quantify residual and maximum displacement demands of inelastic SDOF systems considering a relatively large earthquake ground motion database, and considering a large number of structural parameters. The second part of this study focuses on the evaluation of permanent (residual) and maximum (transient) drift demands of multi-story framed building models under different levels of ground motion intensity. Both parts include the formulation and implementation of simplified probabilistic approaches to estimate maximum and residual displacement demands accounting for the uncertainty in the structural response and the ground motion hazard.; It is believed that this study provides further information towards incorporating explicitly the evaluation of residual displacement demands for assessing the seismic performance of existing structures or, even, for the preliminary design phase of new structures where structural damage control is achieved through control of lateral deformation demands.
机译:最近的地震事件强调了由于过度永久变形而破坏受损结构的必要性,即使它们没有经历倒塌。此外,永久(残余)横向位移的评估对于确定由于地震激发而受损的结构的技术可行性具有重要作用。此外,充分评估永久性横向位移对于评估余震事件的地震风险很重要。因此,在现代基于性能的评估程序中,对现有结构在地震地面震动后可能会经历的残余位移需求进行充分的估算应该是最重要的。为此,本论文旨在提供有关残余位移需求及其对地震动和单自由度(SDOF)和多自由度(MDOF)系统的结构特征的依赖性的更多信息。尤其是,这项研究提出了简化的概率方法,以在最近引入的基于性能的方法的背景下估算不同地震危险等级的残余位移需求。尽管也提供了有关最大(瞬态)位移需求的信息以供参考,但本次调查特别强调了残余位移需求的评估。因此,本调查的第一部分报告了综合的统计研究,以在考虑相对较大的地震地震动数据库并考虑大量结构参数的情况下,对非弹性SDOF系统的残余和最大位移需求进行量化。本研究的第二部分着重于评估多层框架结构建筑模型在不同地面运动强度下的永久(残余)和最大(瞬态)漂移需求。这两个部分都包括简化的概率方法的制定和实施,以估算最大和剩余位移需求,从而解决结构响应和地震动的不确定性。可以认为,这项研究为进一步纳入残余位移需求评估提供了进一步的信息,以评估现有结构的抗震性能,甚至还可以用于新结构的初步设计阶段,在该阶段中,通过控制侧向变形需求即可实现结构损伤的控制。 。

著录项

  • 作者

    Ruiz-Garcia, Jorge.;

  • 作者单位

    Stanford University.;

  • 授予单位 Stanford University.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 407 p.
  • 总页数 407
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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