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Modeling of existing and rehabilitated reinforced concrete buildings.

机译:对现有和已修复的钢筋混凝土建筑物进行建模。

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摘要

There are many existing buildings which have been designed according to earlier codes. In these codes, either design for seismic loads was not a requirement or design was for lower levels of seismic forces. One of the major challenges that faces structural engineers is to determine the seismic capacity of an existing building and to rehabilitate these buildings to upgrade their seismic capacity if needed. At present, there are no guidelines available for the rehabilitation of existing structures and for the design of different retrofitting techniques. One of the most effective ways of rehabilitation is the addition of reinforced concrete (RC) walls. Until now, there is no robust analytical model available to study the effect of adding RC walls on the building behaviour up to failure. To determine the building seismic capacity and to study the effect of adding RC walls, the analytical model used should be capable of representing all the deficiencies in existing buildings. Moreover, it should be able to represent all possible failure modes such as beam-column joint shear failure, cumulative concrete crushing and bond slip failure.; The objective of the present research is to evaluate the behaviour of buildings retrofitted by the addition of reinforced concrete structural walls. This was done by the development of a suitable analytical model that fully describes the behaviour of existing buildings before and after rehabilitation using RC structural walls. This model was verified using test results on specimens representing existing structures and found to give results that are closely correlated to the experimental results. The model was able to detect the failure mechanisms observed in the experiments. This model was used in the analysis of an existing three-storey building to determine its seismic capacity. The effect of ignoring the beam-column joint shear deformations, bond slip and concrete crushing was studied. Ignoring any of these parameters can change the building failure mechanism which could lead to misleading results. After that, a suitable rehabilitation technique using RC walls was chosen and the building behaviour after rehabilitation was studied.
机译:现有的许多建筑物都是根据早期规范设计的。在这些规范中,不是必须要设计地震荷载,或者是要设计较低水平的地震力。结构工程师面临的主要挑战之一是确定现有建筑物的抗震能力,并在需要时对其进行修复以提高其抗震能力。目前,尚无有关修复现有结构和设计不同改造技术的指南。修复最有效的方法之一是添加钢筋混凝土(RC)墙。到目前为止,还没有鲁棒的分析模型可用于研究添加RC墙对建筑物的破坏直至失效的影响。为了确定建筑物的抗震能力并研究添加RC墙的效果,所使用的分析模型应能够代表现有建筑物中的所有缺陷。而且,它应该能够代表所有可能的破坏模式,例如梁柱联合剪切破坏,混凝土累积破碎和粘结滑移破坏。本研究的目的是评估通过添加钢筋混凝土结构墙进行改造的建筑物的性能。这是通过开发合适的分析模型完成的,该模型完全描述了使用RC结构墙修复之前和之后现有建筑物的行为。使用代表现有结构的样品的测试结果验证了该模型,发现该模型给出的结果与实验结果密切相关。该模型能够检测实验中观察到的失效机制。该模型用于分析现有三层建筑,以确定其抗震能力。研究了忽略梁柱接缝剪切变形,粘结滑移和混凝土破碎的影响。忽略这些参数中的任何一个都会改变建筑物的故障机制,从而可能导致误导性结果。之后,选择了一种适合的使用RC墙的修复技术,并研究了修复后的建筑行为。

著录项

  • 作者

    Youssef, Maged Ali.;

  • 作者单位

    McMaster University (Canada).;

  • 授予单位 McMaster University (Canada).;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 143 p.
  • 总页数 143
  • 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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