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Evaluation of a reinforced concrete building damaged during the Northridge earthquake and development of a punching shear failure model for nonlinear analysis.

机译:对Northridge地震中受损的钢筋混凝土建筑物进行评估,并开发用于非线性分析的冲剪破坏模型。

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摘要

A four-story reinforced concrete (RC) frame office building damaged during the Northridge Earthquake was evaluated. The main focus of this study was to test and improve the analytical modeling procedures for the structural system represented by this building. The lateral force resisting system consists of a continuous perimeter ductile moment-resisting frame. The gravity load system for the interior portion of the building is composed of slab-column frames with shear capitals at the connections.; The perimeter frames had no serious damage during the earthquake and appeared to have responded in a ductile manner, as designed. However, punching shear failures occurred at several of the interior slab-column connections. It is believed that lateral displacements in the slab-column frame system, due to seismic loading, caused an increase in the transfer moments at the slab-column connections. These moments increased the shear stresses around the critical shear perimeter to a point where punching shear failures were initiated. The building was evaluated using: (1) a code level strength analysis, (2) a static nonlinear "push-over" analysis, and (3) a dynamic nonlinear response analysis using a ground motion recorded within 1 km (0.6 mi.) of the building.; The code level analysis confirmed that the perimeter frames had good ductile detailing and adequate strength to essentially satisfy current code requirements, as well as those in place when the structure was designed in the mid 1970's. Based on design material properties and field observations, both the static and dynamic nonlinear analyses successfully post-calculated the observed punching shear failures at approximately 1.25% average building drift.; Prior to this study, the ability to model the unloading that occurs at slab-column connections following a punching shear failure was not possible using the nonlinear analysis program, DRAIN-2DM. Therefore, a model for predicting punching shear failures was developed based on experimental results obtained at various universities. This model has been incorporated into the DRAIN-2DM program, along with the desired unloading behavior when a punch occurs. The punching shear failures that occurred in the RC building were successfully post-calculated using the punching shear failure model.
机译:对在北岭地震中受损的四层钢筋混凝土(RC)框架办公楼进行了评估。这项研究的主要重点是测试和改进此建筑物代表的结构系统的分析建模程序。横向抗力系统由一个连续的周边延性抗力矩框架组成。建筑物内部的重力荷载系统由平板柱框架组成,在连接处带有剪力资本。按照设计,周边框架在地震期间没有受到严重破坏,并且似乎以延展的方式做出了响应。但是,冲孔剪切破坏发生在几个内部平板-柱连接处。可以认为,由于地震荷载,板-柱框架系统中的侧向位移导致板-柱连接处的传递力矩增加。这些力矩使临界剪切周长周围的剪应力增加到开始冲切剪切破坏的程度。使用以下方法对建筑物进行评估:(1)代码级强度分析;(2)静态非线性“推覆”分析;(3)使用记录在1 km(0.6英里)内的地面运动进行动态非线性响应分析。建筑物的。代码级别分析确认,外围框架具有良好的延展性细节和足够的强度,可以基本满足当前的代码要求,以及在1970年代中期设计结构时所采用的要求。基于设计材料的特性和现场观察,静态和动态非线性分析均成功地对计算出的冲压剪切破坏进行了后计算,平均约为1.25%的平均建筑物漂移。在进行此研究之前,无法使用非线性分析程序DRAIN-2DM对冲切剪切破坏后在板-柱连接处发生的卸载进行建模。因此,根据在各大学获得的实验结果,开发了一种预测冲切剪切破坏的模型。该模型与冲头发生时所需的卸载行为一起被集成到DRAIN-2DM程序中。使用冲剪破坏模型成功地对RC建筑物中发生的冲剪破坏进行了后计算。

著录项

  • 作者

    Hueste, Mary Beth Deisz.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 1997
  • 页码 272 p.
  • 总页数 272
  • 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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