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Seismic Design and Testing of Rocking Cross Laminated Timber Walls.

机译:摇摆交叉层压木墙的抗震设计和测试。

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摘要

Mass timber is an attractive alternative to nonrenewable materials such as concrete and steel. High rise timber buildings have not been built in high seismic areas due to lack of ductile lateral force resisting systems that can have large seismic force reduction factors. Seismically resilient, lateral systems for tall timber buildings can be created by combining cross laminated timber (CLT) panels with post-tensioned (PT) self-centering technology. The concept features a system of stacked CLT walls where particular stories are equipped to rock against the above and below floor diaphragms through PT connections and are supplemented with mild steel U-shaped flexural plate energy dissipation devices (UFPs).;Experiments were conducted to better understand rocking CLT wall behavior and seismic performance. The testing program consisted of five single wall tests with varying PT areas, initial tensioning force, CLT panel composition, and rocking surface and one coupled wall test with UFPs as the coupling devices. The walls were tested with a quasi-static reverse-cyclic load protocol. The experimental results showed a ductile response and good energy dissipation qualities.;To evaluate the feasibility and performance of the rocking CLT wall system, prototype designs were developed for 8 to 14 story buildings in Seattle using a performance-based seismic design procedure. Performance was assessed using numerical simulations performed in OpenSees for ground motions representing a range of seismic hazards. The results were used to validate the performance-based seismic design procedure for tall timber buildings with rocking CLT walls.
机译:大块木材是不可再生材料(例如混凝土和钢)的有吸引力的替代品。由于缺乏延展性的横向抗力系统,而抗震系统的抗力降低系数较大,因此高层建筑尚未在高地震地区建造。通过将交叉层压木材(CLT)面板与后张紧(PT)自定心技术相结合,可以创建用于高层木结构建筑的抗震,横向系统。该概念采用堆叠式CLT墙系统,其中特定的楼层可以通过PT连接在上下振动膜上摇摆,并补充了低碳钢U形挠性板耗能装置(UFP)。了解摇摆CLT墙的行为和抗震性能。该测试程序包括五次单壁测试,这些测试具有不同的PT面积,初始张紧力,CLT面板组成和摇摆表面,以及一项以UFP作为耦合装置的耦合墙测试。用准静态反向循环载荷协议对墙进行了测试。实验结果表明,该系统具有延性响应和良好的能量耗散特性。为了评估摇摆式CLT墙系统的可行性和性能,使用基于性能的抗震设计程序为西雅图的8至14层建筑物开发了原型设计。使用OpenSees中进行的数值模拟对代表一系列地震危险的地面运动进行了性能评估。结果用于验证具有摇摆CLT墙的高层木结构建筑基于性能的抗震设计程序。

著录项

  • 作者

    Ganey, Ryan S.;

  • 作者单位

    University of Washington.;

  • 授予单位 University of Washington.;
  • 学科 Civil engineering.
  • 学位 Masters
  • 年度 2015
  • 页码 338 p.
  • 总页数 338
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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