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Seismic demands for nondeteriorating frame structures and their dependence on ground motions.

机译:对不劣化框架结构的地震要求及其对地震动的依赖性。

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摘要

The objective of this study is to improve the understanding of behavior patterns and the quantification of seismic demands for nondeteriorationg regular frames subjected to ordinary ground motions. In this study, the term ordinary refers to ground motions that are recorded at distances greater than 13 km from the fault rupture, do not exhibit pulse-type characteristics and are recorded on stiff soil sites. Engineering demand parameters (EDPs) of interest include roof and story drifts, local deformations, absolute floor accelerations and velocities, story shears and overturning moments, and energy terms, all of which are obtained by means of nonlinear time history analyses. Since nondeteriorating frames are used, the EDPs of primary interest are those that correlate best with structural, nonstructural and contents damage at performance levels related to dollar losses and downtime. A relational database management system is used to perform statistical evaluation of EDPs and establish relationships between structural and ground motion parameters. The primary intensity measure, IM, used in this study is the spectral acceleration at the first mode of the structure, Sa(T1).; The emphasis of this study is on quantification of EDPs for performance evaluation, but includes a discussion of issues related to the design of components that need to be protected to avoid brittle failure in the response, e.g., columns in a moment resisting frame. An exploration of probabilistic evaluation of EDPs is summarized, in which EDP hazard curves are developed based on numerical integration procedures and closed form solutions. The use of global collapse fragility functions (for a frame in which P-Delta causes dynamic instability in the response) along with an IM hazard curve to estimate the mean annual frequency of collapse is explored and illustrated in an example.; This study has provided much insight into the inelastic dynamic response characteristics of moment resisting frames and the statistical properties of important engineering demand parameters. The data from the extensive nonlinear analyses of various frames with variations in their properties is stored in a database management system and can be exploited to obtain comprehensive statistical information on other EDPs of interest in performance evaluation of frame structures.
机译:这项研究的目的是增进人们对行为模式的理解以及对承受普通地面运动的非劣化常规框架的地震需求的量化。在本研究中,术语“斜体”是指距断层破裂大于13 km处记录的地面运动,不表现出脉冲型特征并且记录在坚硬的土壤部位。感兴趣的工程需求参数(EDP)包括屋顶和楼层的漂移,局部变形,绝对地面加速度和速度,楼层的剪切和倾覆力矩以及能量项,所有这些都通过非线性时程分析获得。由于使用了不劣化的框架,因此,与美元损失和停机时间有关的性能水平上,与结构,非结构和内容物损坏最相关的EDP是最重要的。关系数据库管理系统用于执行EDP的统计评估,并建立结构和地面运动参数之间的关系。本研究中使用的主要强度度量IM是在结构的第一模式S a (T 1 )处的光谱加速度。这项研究的重点是对用于性能评估的EDP进行量化,但包括与组件设计相关的问题的讨论,这些组件需要保护以避免响应中的脆性失效,例如,抗弯框架中的立柱。总结了对EDP概率评估的探索,其中基于数值积分程序和闭式解制定了EDP危险曲线。在一个示例中,探索并说明了使用整体崩溃脆弱性函数(对于P-Delta在响应中造成动态不稳定性的框架)以及IM危险曲线来估计崩溃的平均年频率。这项研究为抗弯框架的非弹性动力响应特性以及重要的工程需求参数的统计特性提供了很多见识。来自各种具有不同特性的框架的广泛非线性分析的数据存储在数据库管理系统中,可以用来获取有关框架结构性能评估中其他有关EDP的综合统计信息。

著录项

  • 作者

    Medina, Ricardo Antonio.;

  • 作者单位

    Stanford University.;

  • 授予单位 Stanford University.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 p.1381
  • 总页数 377
  • 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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