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Validation of the seismic performance of composite RCS frames: Full-scale testing analysis and seismic design.

机译:验证复合RCS框架的抗震性能:全面测试分析和抗震设计。

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摘要

Composite RCS moment frames integrate reinforced concrete columns with structural steel beams, providing several key advantages over conventional steel or concrete moment resisting frames. Past studies have shown these composite systems to be efficient in both the design and construction stages, but it has largely been recognized that tests and complementary analyses on full structural systems is needed to further validate the knowledge that had been gained up to this point. The underlining goal of this research program is to fill this knowledge gap and ultimately facilitate the greater acceptance and use of composite RCS systems for seismic design. This research synthesizes and interprets some of the latest provisions and past studies on RCS systems and applies the accumulated knowledge to (1) develop and validate improved seismic design provisions for RCS frames, (2) assess and demonstrate the seismic performance of RCS frames through full-scale frame testing and simulations of prototype building systems, and (3) develop and validate modeling guidelines for nonlinear analysis and performance simulation. The cornerstone of this research is the planning, design and testing of a full-scale composite RCS moment frame that is pseudo-dynamically loaded to simulate earthquake motions ranging in hazards from frequent to extremely rare events. In addition to the direct benefits of the test results, the frame and supporting subassembly tests provide a rich data set for the validation of nonlinear analysis and damage models.; Designed to interrogate the minimum limits of current building code requirements, the full-scale test frame exhibited excellent seismic performance up through the maximum considered earthquake level. The damage patterns after each pseudo-dynamic earthquake event were representative of the performance expected in moment resisting frames designed by current building codes. The results from the test frame and the simulation of corresponding case-study buildings have several important implications on design and analytical modeling of composite moment resisting frames.
机译:复合RCS矩框架将钢筋混凝土柱与结构钢梁集成在一起,与传统的钢或混凝土抗矩框架相比,具有几个关键优势。过去的研究表明,这些复合系统在设计和施工阶段都是有效的,但是人们已经广泛认识到,需要对整个结构系统进行测试和补充分析,以进一步验证到目前为止获得的知识。该研究计划的重点是填补这一知识空白,并最终促进复合RCS系统在地震设计中的更大接受和使用。这项研究综合并解释了有关RCS系统的一些最新规定和过去的研究,并将积累的知识应用于(1)为RCS框架制定和验证改进的抗震设计规定,(2)通过全面评估和证明RCS框架的抗震性能原型构建系统的大规模框架测试和仿真,以及(3)制定和验证用于非线性分析和性能仿真的建模准则。这项研究的基础是规划,设计和测试完整的复合RCS力矩框架,该框架是拟动态加载的,可以模拟从危险事件到频繁发生的地震运动。除了测试结果的直接好处外,框架和辅助组件测试还为验证非线性分析和损伤模型提供了丰富的数据集。专为询问当前建筑规范要求的最低限制而设计,全尺寸测试框架在考虑到的最高地震等级下均表现出出色的抗震性能。每次拟动力地震事件后的破坏模式代表了当前建筑规范设计的抗弯框架的预期性能。测试框架的结果以及相应案例研究建筑物的仿真对复合抗弯框架的设计和分析建模具有重要意义。

著录项

  • 作者

    Cordova, Paul Phillip.;

  • 作者单位

    Stanford University.;

  • 授予单位 Stanford University.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 405 p.
  • 总页数 405
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

  • 入库时间 2022-08-17 11:41:22

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