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Inelastic dynamic behavior and design of hybrid coupled wall systems.

机译:混合动力耦合墙系统的非弹性动力学行为和设计。

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摘要

A key consideration in seismic design of buildings is to ensure that the lateral load resisting system has an appropriate combination of strength, stiffness and energy dissipation capacity. Hybrid coupled wall systems, in which steel beams are used to couple two or more reinforced concrete shear walls in series, can be designed to have these attributes and therefore have the potential to deliver good performance under severe seismic loading. This research presents an investigation of the seismic behavior of this type of structural system.; System response of 12- and 18-story high prototypes is studied using transient finite element analyses that accounts for the most important aspects of material nonlinear behavior including concrete cracking, tension stiffening, and compressive behavior for both confined and unconfined concrete as well as steel yielding. The developed finite element models are calibrated using more detailed models developed in previous research and are validated through numerous comparisons with test results of reinforced concrete walls and wall-beam subassemblages.; Suites of transient inelastic analyses are conducted to investigate pertinent parameters including hazard level, earthquake record scaling, dynamic base shear magnification, interstory drift, shear distortion, coupling beam plastic rotation, and wall rotation. Different performance measures are proposed to judge and compare the behavior of the various systems. The analyses show that, in general, hybrid coupled walls are particularly well suited for use in regions of high seismic risk.; The results of the dynamic analyses are used to judge the validity of and to refine a previously proposed design method based on the capacity design concept and the assumption of behavior dominated by the first vibration mode. The adequacy of design based on the pushover analysis procedure as promoted in FEMA-356 (2000) is also investigated using the dynamic analysis results. Substantial discrepancies between both methods are observed, especially in the case of the 18-story system. A critical assessment of dynamic base shear magnification is also conducted, and a new method for estimating its effects is suggested. The method is based on a modal combination procedure that accounts for presence of a plastic hinge at the wall base. Finally, the validity of limitations in FEMA-368 (2000) on building height, particularly for hybrid coupled wall systems, is discussed.
机译:建筑物抗震设计的关键考虑因素是确保抗侧向荷载系统具有强度,刚度和能量消散能力的适当组合。可以将钢梁用于串联耦合两个或多个钢筋混凝土剪力墙的混合耦合墙系统设计为具有这些属性,因此有可能在严重的地震荷载下提供良好的性能。这项研究对这种结构系统的地震行为进行了研究。使用瞬态有限元分析研究了12层和18层高原型的系统响应,这些分析说明了材料非线性行为的最重要方面,包括混凝土的开裂,抗拉刚度和密闭和非密闭混凝土的压缩行为以及钢的屈服。所开发的有限元模型是使用先前研究中开发的更详细的模型进行校准的,并通过与钢筋混凝土墙和壁梁组件的测试结果进行的大量比较得到了验证。进行了一系列的瞬态非弹性分析,以研究相关的参数,包括危险等级,地震记录缩放,动态基础剪切放大率,层间漂移,剪切变形,耦合梁塑性旋转和墙体旋转。建议使用不同的性能指标来判断和比较各种系统的行为。分析表明,一般来说,混合耦合墙特别适合在地震危险性高的地区使用。动态分析的结果用于基于容量设计概念和由第一振动模式主导的行为假设来判断方法的有效性并改进先前提出的设计方法。利用动态分析结果,还研究了基于FEMA-356(2000)提出的推覆分析程序进行设计的充分性。观察到两种方法之间存在很大差异,尤其是在18层系统的情况下。还对动态基础剪切放大倍数进行了严格的评估,并提出了一种评估其效果的新方法。该方法基于模态组合过程,该过程说明了墙基处存在塑料铰链。最后,讨论了FEMA-368(2000)中关于建筑物高度的限制的有效性,特别是对于混合耦合墙系统。

著录项

  • 作者

    Hassan, Mohamed.;

  • 作者单位

    University of Central Florida.;

  • 授予单位 University of Central Florida.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 320 p.
  • 总页数 320
  • 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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