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Seismic torsional response of asymmetrical multi-storey frame buildings.

机译:不对称多层框架建筑的地震扭转响应。

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摘要

Seismic torsional response has always been a principal cause of structural failure in every major earthquake. There are numerous observations of damages caused by excessive torsional response in buildings, bridges, and lifeline structures. The torsion-induced failures have been especially catastrophic for multi-storey buildings because torsional response changes the uniform translational seismic floor displacements and causes concentration of demand in elements at the perimeter of the building. This often leads to failure of the over-loaded elements, which in turn initiates progressive collapse of the building.; This study provides a conceptual explanation for the poor seismic performance of torsionally flexible asymmetric structures. These are buildings with a low level of torsional stiffness. Post-earthquake observations and also studies on single storey buildings have shown the vulnerability of these buildings to seismic damages. The study reported in this thesis extends the findings of previous research to multi-storey buildings and provides a theoretical foundation for understanding their seismic performance. Guidelines are developed and formulated to enable designers to identify torsionally flexible asymmetric buildings. This is of prime importance, as it is shown here that corrective measures taken by building codes in the form of statically applied torsional provisions are not effective for this type of structure.; The future generation of codes for designing new structures and retrofitting existing structures will be performance based. A structure designed with such an approach has to meet a specific set of seismic performance criteria for a specific level of seismic hazard. Dynamic analyses of the building will be needed to assess the performance of the building at the many levels of seismic hazard. Preparation of input and interpretation of the large amount of output, resulting from an inelastic response analysis of multi-storey buildings is not practical, even for symmetric buildings. To overcome this, several simplified procedures based on inelastic static analyses are formulated in this thesis. Application of these procedures to some example multi-storey asymmetric buildings has shown that they are sufficiently simple and yet accurate for use in design offices. It is believed that a combination of these methods with sound engineering judgement will provide a practical and economical tool for the earthquake-resistant design profession to implement the performance-based design codes, currently being prepared by many countries, to protect life and property in urban centres in the event of an earthquake.
机译:地震扭转反应一直是每次大地震中结构破坏的主要原因。对于建筑物,桥梁和救生索结构中过度的扭转响应所造成的损坏,有很多观察。扭转引起的破坏对于多层建筑物尤其是灾难性的,因为扭转响应会改变均匀的平移地震层位移,并使需求集中在建筑物的外围。这通常会导致超载的元件失效,进而导致建筑物逐渐倒塌。这项研究为扭转柔性非对称结构的抗震性能差提供了理论解释。这些是抗扭刚度较低的建筑物。地震后的观察以及对单层建筑物的研究表明,这些建筑物易受地震破坏。本文所报道的研究将以前的研究成果扩展到多层建筑,并为理解其抗震性能提供了理论基础。制定并制定了指南,使设计人员能够识别具有扭转弹性的不对称建筑物。这是最重要的,如此处所示,建筑规范以静态施加的扭转规定形式采取的纠正措施对于这种类型的结构无效。用于设计新结构和翻新现有结构的代码的下一代将是基于性能的。使用这种方法设计的结构必须满足特定级别的地震危险性的特定一组地震性能标准。需要对建筑物进行动态分析,以评估建筑物在许多地震危险等级下的性能。多层建筑物的无弹性响应分析导致的输入准备和大量输出的解释是不实际的,即使对于对称建筑物也是如此。为了克服这个问题,本文提出了几种基于非弹性静力分析的简化程序。将这些程序应用于某些示例性多层非对称建筑物已表明,它们足够简单且准确,可用于设计室。相信将这些方法与可靠的工程判断结合起来,将为抗震设计行业提供一种实用且经济的工具,以实施目前许多国家正在制定的基于性能的设计规范,以保护城市的生命和财产。发生地震时会集中。

著录项

  • 作者单位

    McMaster University (Canada).;

  • 授予单位 McMaster University (Canada).;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 1998
  • 页码 222 p.
  • 总页数 222
  • 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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