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Simplified seismic collapse capacity-based evaluation and design of frame buildings with and without supplemental damping systems.

机译:带有和不带有附加阻尼系统的框架建筑物的简化基于地震倒塌能力的评估和设计。

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摘要

A simplified procedure is developed for estimating the seismic sidesway collapse capacity of frame building structures. The procedure is then extended to quantify the seismic collapse capacity of buildings incorporating supplemental damping systems. The proposed procedure is based on a robust database of seismic peak displacement responses of viscously damped nonlinear single-degree-of-freedom systems for various seismic intensities and uses nonlinear static (pushover) analysis without the need for nonlinear time history dynamic analysis. The proposed procedure is assessed by comparing its collapse capacity predictions on 1470 different building models with those obtained from incremental nonlinear dynamic analyses. A straightforward unifying collapse capacity based design procedure aimed at achieving a pre-determined probability of collapse under maximum considered earthquake event is also introduced for structures equipped with viscous dampers (linear and nonlinear) and hysteretic dampers. The proposed simplified procedure offers a simple, yet efficient, computational/analytical tool that is capable of predicting collapse capacities with acceptable accuracy for a wide variety of frame building structures incorporate several types of supplemental damping systems.
机译:开发了一种简化的程序来估计框架建筑结构的地震侧向倒塌能力。然后扩展该程序以量化包含辅助阻尼系统的建筑物的地震倒塌能力。所提出的程序基于健壮的粘性阻尼非线性单自由度系统针对各种地震烈度的地震峰值位移响应的可靠数据库,并使用了非线性静态(推动)分析,而无需进行非线性时程动态分析。通过比较其在1470种不同建筑模型上的倒塌能力预测与从增量非线性动力分析获得的倒塌能力预测,来评估所提议的过程。针对装备有粘性阻尼器(线性和非线性)和滞后阻尼器的结构,还引入了一种基于统一的基于崩溃能力的简单设计程序,旨在在最大考虑地震事件下实现预定的崩溃概率。所提出的简化程序提供了一种简单而有效的计算/分析工具,该工具能够以可接受的准确度预测倒塌能力,适用于结合了几种类型的减震系统的多种框架结构。

著录项

  • 作者

    Hamidia, Mohammad Javad.;

  • 作者单位

    State University of New York at Buffalo.;

  • 授予单位 State University of New York at Buffalo.;
  • 学科 Engineering Civil.;Engineering Geophysical.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 248 p.
  • 总页数 248
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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