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Seismic retrofit of non-ductile RC frames using friction dampers.

机译:使用摩擦阻尼器对非延性RC框架进行抗震改造。

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摘要

Recent earthquakes around the world have shown the disastrous effects of earthquakes on infrastructural facilities. The risks are particularly high in the eastern and central parts of United States, where most of the existing stock of buildings were designed without any consideration for seismic loads, and there is a potential for earthquakes to occur. In light of this, the aim of the research presented in the thesis was to propose and evaluate a practical seismic retrofit scheme for such structures. Earlier research had shown that the existing nonductile RC frames would undergo large drifts even under moderate earthquake loading. The proposed method aims to limit the drift levels without increasing the loading on the foundations. The proposed retrofit scheme involves the use of slotted bolt type friction dampers incorporated along with masonry infill walls. The proposed scheme has the advantage of being easy to install in an existing building and being economically realistic. The evaluation procedure for the scheme can be categorized into three parts: experiments, time history analyses and proposal of a design methodology. The scheme was experimentally evaluated using shake table tests on a 1/3rd scale one story one bay specimen. Under two contrasting ground motions, the wall-damper scheme exhibited different effects on the frame response, indicating the importance of ground motion characteristics on the effectiveness of the retrofit. An analytical model was used to simulate the test results. To further understand the effects of using friction dampers in multistory nondurable RC frames, nonlinear time history analyses were performed for a three bay three story nonductile RC frame. Nine different ground motions with two levels of loading were used. For each level of loading, the expected performance criteria in terms of maximum interstory drifts and maximum foundation loads were defined. The analyses showed that introducing the friction dampers improved the performance of the frame for the wide range of ground motions applied. The success of the retrofit scheme however depends on the slip load setting in the friction dampers. From the analysis process it was determined that a large number of time history analysis runs would be required to obtain the optimum slip load setting. To make the design of friction damper retrofit schemes more acceptable for practicing engineers, a simplified design method, called the Inelastic Demand Spectrum (IDS) method, was proposed. For two different frames, a three story and a ten story frame, it was shown that the IDS method predicted the optimum slip load setting accurately. The method also provided interesting insight into the behavior of nonlinear structures under seismic loading.; To summarize, a practical and economical seismic retrofit scheme was proposed; the scheme was experimentally evaluated using shake table tests; several time history analyses were performed to study its effectiveness and a simplified design methodology was developed for obtaining the optimum slip load.
机译:世界各地最近发生的地震表明地震对基础设施造成了灾难性影响。在美国东部和中部地区,风险尤其高,那里的大多数现有建筑物的设计都没有考虑地震荷载,并且有发生地震的可能性。有鉴于此,本文提出的研究目的是提出并评估一种针对此类结构的实用抗震改造方案。早期的研究表明,即使在中等地震荷载下,现有的非延性RC框架也会发生较大的漂移。所提出的方法旨在在不增加基础载荷的情况下限制漂移水平。拟议的改造方案包括使用带槽螺栓型摩擦阻尼器以及砌体填充墙。所提出的方案的优点是易于安装在现有建筑物中并且在经济上是现实的。该方案的评估程序可以分为三个部分:实验,时程分析和设计方法的建议。该方案是使用摇表测试以1/3比例的一层一海湾标本进行实验评估的。在两个相反的地面运动下,墙壁阻尼器方案对车架响应表现出不同的影响,表明地面运动特性对改造效果的重要性。使用分析模型来模拟测试结果。为了进一步了解在多层非耐用RC框架中使用摩擦阻尼器的效果,对三层三层非延性RC框架进行了非线性时程分析。使用了两种具有两个载荷水平的九种不同的地面运动。对于每个荷载水平,都定义了关于最大层间位移和最大基础荷载的预期性能标准。分析表明,引入摩擦阻尼器可提高框架在大范围地面运动中的性能。然而,改造方案的成功取决于摩擦阻尼器中的滑动载荷设定。从分析过程中可以确定,需要大量的时间历史分析运行才能获得最佳的滑移载荷设置。为了使摩擦阻尼器改造方案的设计更适合于实践中的工程师,提出了一种简化的设计方法,称为非弹性需求谱(IDS)方法。对于两个不同的框架(三层和十层框架),IDS方法可以准确预测最佳滑移载荷设置。该方法还为地震作用下非线性结构的行为提供了有趣的见识。综上所述,提出了一种实用,经济的抗震改造方案。使用摇表测试对该方案进行了实验评估;进行了几次时程分析以研究其有效性,并开发了一种简化的设计方法来获得最佳的滑移载荷。

著录项

  • 作者

    Rao, Rajesh Shankar.;

  • 作者单位

    Cornell University.;

  • 授予单位 Cornell University.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 1996
  • 页码 295 p.
  • 总页数 295
  • 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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