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Simulation and damage models for performance assessment of reinforced concrete beam-column joints.

机译:仿真和损伤模型,用于评估钢筋混凝土梁柱节点的性能。

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摘要

Performance based earthquake Engineering requires robust analytical tools for obtaining the structural response, damage assessment, as well as for performing reliability analysis. This research effort advances the numerical modeling of reinforced concrete structures by enabling simulation of inelastic beam-column joint behavior and reduced load carrying capacity of structural frames resulting from joint damage. The behavior of beam-column joints has been researched extensively over the past forty years through experimental studies on isolated joints in reinforced concrete subassemblies. This study focuses on the influence of joints on the overall frame behavior and the effect of modeling uncertainties on the response prediction. The analytical models proposed in this research are implemented in the OpenSees environment. Joint elements are formulated to simulate the nonlinear response of joints in two and three-dimensional models under cyclic loading. Proposed joint elements capture both geometric and material nonlinearities. A collection of nonlinear constitutive rules with cyclic deterioration are implemented to facilitate modeling the inelastic behavior associated with shear panel deformations and the slip of longitudinal reinforcement anchored in the joint. A generic damage model is proposed and implemented following the object-oriented architecture of OpenSees. The damage model incorporates existing damage formulations for representing deteriorating parameters in component force-deformation relationships and for component performance assessment. Calibrated modeling parameters are provided for seismically detailed code-conforming joints, and with minor calibration the same methods are used for modeling older (non-conforming) designs. The generic damage model allows one to present the damage indices as the engineering demand parameters and define limit-state boundaries for reliability analysis based on component damage. The sensitivity of the joint response and the nonlinear materials to modeling parameters are formulated for application through the reliability analysis toolbox of OpenSees. Applications of the proposed performance modeling tools are demonstrated through reliability simulations to compute the probabilistic distribution of damage in the joints, considering variability in both modeling and material parameters.
机译:基于性能的地震工程需要强大的分析工具来获得结构响应,损伤评估以及进行可靠性分析。这项研究工作通过模拟无弹性梁柱的连接行为以及减小由于连接处损坏而引起的结构框架的承载能力,从而促进了钢筋混凝土结构的数值建模。在过去的四十年中,通过对钢筋混凝土子组合件中孤立节点的试验研究,对梁柱节点的性能进行了广泛的研究。这项研究的重点是关节对整体框架行为的影响以及建模不确定性对响应预测的影响。本研究中提出的分析模型是在OpenSees环境中实现的。制定了关节单元,以模拟循环载荷下二维和三维模型中关节的非线性响应。拟议的联合元素同时体现了几何和材料非线性。实施了具有循环退化的非线性本构规则的集合,以简化与剪切面板变形和锚固在接头中的纵向钢筋的滑动相关的非弹性行为的建模。根据OpenSees的面向对象的体系结构,提出并实现了一个通用的损坏模型。损伤模型结合了现有的损伤公式,用于表示零件力-变形关系中不断恶化的参数以及零件性能评估。为地震详细的符合代码规范的接头提供了校准的建模参数,并且通过较小的校准,使用相同的方法对较旧(不符合规范)的设计进行建模。通用损坏模型允许将损坏指数显示为工程需求参数,并定义极限状态边界以基于组件损坏进行可靠性分析。通过OpenSees的可靠性分析工具箱,可以确定关节响应和非线性材料对建模参数的敏感性,以供应用。考虑到建模和材料参数的可变性,通过可靠性仿真演示了所提出的性能建模工具的应用,以计算接头损坏的概率分布。

著录项

  • 作者

    Altoontash, Arash.;

  • 作者单位

    Stanford University.;

  • 授予单位 Stanford University.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 232 p.
  • 总页数 232
  • 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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