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Estimating Seismic Demands for Performance-Based Engineering of Buildings.

机译:估算基于性能的建筑工程的地震需求。

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摘要

Earthquake engineering practice is increasingly using performance-based procedures for evaluating existing buildings and proposed designs of new buildings. Both nonlinear static and nonlinear response history analyses (RHA) are used for estimating engineering demand parameters (EDPs)---floor displacements, story drifts, internal forces, hinge rotation, etc---in performance-based engineering of buildings. Topics related to both analysis procedures are investigated in this dissertation.;In the first part, the original modal pushover analysis (MPA) to estimate seismic demands due to one component of ground motion is extended to consider two horizontal components simultaneously in three-dimensional analysis of buildings, and to estimate internal forces and plastic hinge rotations directly from pushover analyses. Subsequently, the accuracy of MPA in estimating EDPs for tall buildings and unsymmetric-plan buildings is evaluated. Seismic demands for recently designed and built 48- and 62-story buildings with ductile concrete core walls---designed according to the alternative provisions of the 2001 San Francisco Building Code (SFBC)---due to an ensemble of 30 ground motions are computed by MPA and nonlinear RHA, and compared. We demonstrate that MPA procedure shows degree of accuracy that is sufficient for practical application in estimating median values of EDPs for tall buildings subjected to two horizontal components of ground motion. The accuracy of the extended MPA procedure is also evaluated for low- and medium-rise unsymmetric-plan buildings with ductile frames designed in accordance with the 1985 Uniform Building Code (UBC85) and the 2006 International Building Code (IBC06). Seismic demands are computed for six unsymmetric-plan buildings due to 39 ground motions acting simultaneously in two orthogonal horizontal directions. Comparing these results with those from nonlinear RHA, we demonstrate that MPA provides good estimates of EDPs whereas the procedures specified in the ASCE/SEI 41-06 standard and the Eurocode 8 are not satisfactory for estimating seismic demands for unsymmetric-plan buildings.;The second part of the dissertation concerns nonlinear response history analysis of buildings. With the goal of developing effective procedures for selection and scaling of multi-component ground motions to be used in nonlinear RHA, a modal-pushover-based-scaling (MPS) procedure is developed in this investigation. The developed MPS procedure is an extension of the original MPS procedure for one component of ground motion to two horizontal components. In this investigation, each horizontal component of ground motion is scaled by a factor selected to match the deformation of its first-"mode" inelastic SDF system to a target inelastic deformation that may be estimated using a design (or response) spectrum. The properties of the first-"mode" inelastic SDF system are determined by pushover analysis of the building using the first-mode distribution. Based on the results for medium-rise symmetric-plan and unsymmetric-plan buildings with ductile frames, we demonstrate that the MPS procedure provides much superior results than the scaling procedure specified in the ASCE/SEI 7-05 standard.
机译:地震工程实践越来越多地使用基于性能的程序来评估现有建筑物和新建筑物的拟议设计。在基于性能的建筑工程中,非线性静态和非线性响应历史分析(RHA)均用于估算工程需求参数(EDP)-楼层位移,楼层漂移,内力,铰链旋转等。本文对这两种分析方法都进行了研究。第一部分,将地震动一个分量引起的地震需求估算的原始模态推覆分析(MPA)扩展为在三维分析中同时考虑两个水平分量。并直接从推覆分析中估算内部力和塑料铰链旋转。随后,评估了MPA估算高层建筑和非对称建筑的EDP的准确性。由于有30次地面运动的合奏,对最近设计和建造的48层和62层具有延性混凝土芯墙的建筑物的抗震要求是根据2001年《旧金山建筑规范》(SFBC)的替代规定设计的。由MPA和非线性RHA计算并进行比较。我们证明,MPA程序显示出的精确度足以在实际应用中估算承受地面运动两个水平分量的高层建筑的EDP中间值。对于根据1985年《统一建筑规范》(UBC85)和2006年《国际建筑规范》(IBC06)设计的具有延性框架的中低层非对称平面建筑物,还评估了扩展MPA程序的准确性。由于39个地面运动同时在两个正交的水平方向上作用,因此针对六座非对称平面建筑物计算了地震需求。将这些结果与非线性RHA的结果进行比较,我们证明MPA可以很好地估计EDP,而ASCE / SEI 41-06标准和Eurocode 8中指定的程序对于估计非对称计划建筑物的地震需求并不令人满意。论文的第二部分涉及建筑物的非线性响应历史分析。为了开发用于非线性RHA的多分量地面运动的选择和缩放的有效程序,本研究开发了基于模态推覆的缩放(MPS)程序。所开发的MPS程序是原始MPS程序的扩展,适用于地面运动的一个分量到两个水平分量。在这项研究中,地面运动的每个水平分量都按一定比例缩放,以使其第一“模式”非弹性SDF系统的变形与目标非弹性变形相匹配,而目标非弹性变形可以使用设计(或响应)频谱进行估算。 “第一模式”非弹性SDF系统的属性是通过使用第一模式分布的建筑物的推覆分析确定的。基于带有延性框架的中层对称平面和非对称平面建筑物的结果,我们证明MPS程序比ASCE / SEI 7-05标准中指定的缩放程序要好得多。

著录项

  • 作者

    Reyes, Juan Carlos.;

  • 作者单位

    University of California, Berkeley.;

  • 授予单位 University of California, Berkeley.;
  • 学科 Civil engineering.;Geophysics.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 236 p.
  • 总页数 236
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:38:29

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