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Experimental and analytical investigation of the seismic performance of low-rise masonry veneer buildings.

机译:低层砖石饰面建筑抗震性能的实验和分析研究。

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摘要

This dissertation presents an experimental and analytical evaluation of the seismic performance of clay masonry veneer in wood-stud buildings. The experimental program involved the shaking-table testing of eleven wall assemblies as well as a full-scale one-story building. Walls were subjected to separate in- and out-of-plane seismic excitation. The specimens had different anchor types, anchor spacing, aspect ratio, presence and absence of joint reinforcement and window openings. All the specimens were designed and constructed in accordance with the prescriptive requirements of the MSJC for masonry veneer for Seismic Design Categories D and E.;The shaking-table tests showed that veneer complying with the current MSJC provisions can sustain ground motions far in excess of representative Design Basis and Maximum Considered Earthquakes for Seismic Design Categories D and E. The out-of-plane response was governed by the anchor axial strength. The in-plane response was characterized by veneer sliding for the squat panels and a combination of rocking and sliding for the slender ones. Experiments showed the possible reduction of the extraction capacities of the nails due to high moisture content in wood studs. Test data showed that veneers oriented parallel to the direction of shaking could restrain the wood structure. However, slender rocking veneer panels would induce additional seismic force to the wood structure under severe excitation.;In the analytical phase of the research, numerical models were developed and calibrated by the experimental results. The models were capable of capturing the displacement and acceleration responses of the tested specimens as well as the failure mechanisms. The models were used to conduct parametric studies to examine the influence of different design variables on veneer response, including the effect of inplane veneer on the seismic performance of wood-stud shear walls, and the behavior of two-story veneers under out-of-plane seismic excitation.;The dissertation finally proposes a set of recommendations to improve current design provisions. Results highlighted the need for a minimum anchor strength requirement to assure a satisfactory level of performance under the Design Basis and Maximum Considered Earthquakes. The mass of the squat veneers oriented parallel to the direction of motion should not be treated as merely added mass.
机译:本文对木栓钉建筑中黏土砖贴面的抗震性能进行了实验和分析评价。实验程序包括对11个墙组件以及一栋完整的一层建筑的振动台测试。墙壁分别受到平面内和平面外地震激励。标本具有不同的锚类型,锚间距,长宽比,是否存在接缝加强件和窗户开口。所有标本的设计和建造均符合MSJC对D和E类抗震设计的砌体贴面的规定要求;振动台试验表明,符合MSJC当前规定的贴面可以承受远远超过地面的地面运动具有代表性的D类和E类地震抗震设计基准和最大考虑地震。平面外响应受锚固件轴向强度支配。面内响应的特征在于,下蹲板的贴面滑动和细长板的摇摆和滑动相结合。实验表明,由于木钉中的高水分含量,指甲的提取能力可能会降低。试验数据表明,与振动方向平行的单板可以约束木质结构。然而,细长​​的单板饰面板会在强烈激励下对木结构产生额外的地震力。在研究的分析阶段,通过实验结果建立了数值模型并进行了校准。这些模型能够捕获被测样品的位移和加速度响应以及破坏机理。该模型用于进行参数研究,以检查不同设计变量对单板响应的影响,包括平面单板对木钉剪力墙抗震性能的影响,以及两层单板在超限条件下的性能。最后提出了一系列改进现行设计规定的建议。结果强调了对最低锚固强度的要求,以确保在“设计基准”和“最大考虑地震”下达到令人满意的性能。平行于运动方向定向的深蹲单板的质量不应仅视为增加的质量。

著录项

  • 作者

    Okail, Hussein.;

  • 作者单位

    University of California, San Diego.;

  • 授予单位 University of California, San Diego.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 253 p.
  • 总页数 253
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:36:50

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