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Effect of stiffness on the seismic performance of code-conforming reinforced concrete shear wall buildings

机译:刚度对巧妙钢筋混凝土剪力墙建筑物抗震性能的影响

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摘要

This study assesses the effect of the stiffness on the seismic performance of residential shear wall buildings designed according to current Chilean regulations, including DS60 and DS61. Specifically, the paper focuses on the effect of stiffness on the building overstrength, displacement ductility, fragility for Life Safety (LS) and collapse limit states, as well as the probability of achieving these two limits states in 50 years. The seismic performance is assessed for a group of four 20 -story residential shear wall buildings archetypes located in Santiago. Walls were modeled using the multiple vertical line element model (MVLEM) with inelastic hysteretic materials for the vertical elements, and a linear -elastic shear behavior. Pushover analyses were considered to estimate the buildings overstrength and displacement ductility, while incremental dynamic analyses were per- formed to estimate fragility curves. A probabilistic seismic hazard analysis, which considered the seismicity of Chile central zone, was performed to estimate the probability of achieving the two limits states in 50 years. The results show that an increase in the stiffness reduces the chance of exceeding the LS and collapse limit states for the same intensity level. Additionally, the probabilistic seismic hazard analysis shows that, when the stiffness increases, the probability of reaching the LS limit state in 50 years also decreases. Counterintuitively, the probability of collapse in 50 years increases as the stiffness increases, due to the considered seismic hazard and the design requirements. Since society is moving towards resilient structural designs that minimize damage, disruption and economic losses, it is concluded that the performance of reinforced concrete shear wall buildings is improved by increasing the stiffness.
机译:本研究评估了刚度对根据当前智利法规设计的住宅剪力墙建筑物抗震性能的影响,包括DS60和DS61。具体而言,本文侧重于刚度对建筑物过长,位移延性,生命安全(LS)脆弱性和崩溃极限状态的效果,以及在50年内实现这两个限制状态的可能性。在圣地亚哥的一组四个20级住宅剪切墙壁建筑物分类中评估了地震性能。墙壁使用多个垂直线元素模型(MVLEM)进行建模,其具有用于垂直元件的非弹性滞后材料,以及线性的弹性剪切行为。考虑推进分析估计建筑物过度长度和位移延展性,而每形成增量动态分析以估算脆弱曲线。考虑智利中央区地震性的概率地震危害分析是为了估计50年来实现两个限制状态的可能性。结果表明,刚度的增加减少了对相同强度水平超过LS和塌陷极限状态的可能性。另外,概率地震危害分析表明,当刚度增加时,在50年内到达LS限制状态的可能性也降低了。违反直接性地,由于刚度增加,50年崩溃的概率增加,因为被认为是被认为的地震危害和设计要求。由于社会正在朝着弹性结构设计迈进,以最大限度地减少损坏,破坏和经济损失,因此得出结论,通过增加刚度来提高钢筋混凝土剪力墙建筑物的性能。

著录项

  • 来源
    《Engineering Structures》 |2020年第15期|110724.1-110724.14|共14页
  • 作者单位

    Pontificia Univ Catolica Chile Vicuna Mackenna 4860 Santiago Chile|Res Ctr Integrated Disaster Risk Management ANID Vicuna Mackenna 4860 Santiago Chile|Univ Fuerzas Armadas ESPE Dept Ciencias Tierra & Construcc Ave El Progreso S-N Sangolqui 171103 Ecuador;

    Pontificia Univ Catolica Chile Vicuna Mackenna 4860 Santiago Chile|Res Ctr Integrated Disaster Risk Management ANID Vicuna Mackenna 4860 Santiago Chile;

    Univ Adolfo Ibanez Fac Ingn & Ciencias Diagonal Las Torres 2640 Santiago 7941169 Chile;

    Univ Norte Dept Ingn Civil & Ambiental Km 5 Via Puerto Colombia Barranquilla Colombia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Reinforced concrete; Shear wall; Building; Collapse; Life safety; Stiffness; Fragility; Risk;

    机译:钢筋混凝土;剪力墙;建筑;崩溃;生命安全;僵硬;脆弱;风险;

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