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Investigation of base-isolated structures during recent earthquakes and computer simulations utilizing near-source long-period ground motions

机译:最近地震中基础隔震结构的研究以及利用近源长时间周期地震动的计算机模拟

摘要

The current study contains two major parts. Part One consists of the identification and analysis of three existing base-isolated buildings in Southern California. The identification and analysis utilize the recorded motions of these structures from past earthquakes. System identification is useful for understanding the extent to which the structures enter the nonlinear realm and how much their properties change.Models are constructed assuming completely elastic three-dimensional superstructures, with idealized bi-linear hysteretic elements for the isolating bearings. The properties used in the bearing models were taken from tests of the actual bearings before installation. The models were then verified by comparing their responses computed using the various recorded foundation ground motions, with the recorded responses of the actual structures. The models were adjusted to minimize the error of several response quantities.Part Two contains computer simulations subjecting a typical base-isolated building (TBIB) to two classes of ground motions. The first is a sampling of near-source recorded motion from past moderate-to-large earthquakes. The second is a group of synthetic near-source motions generated for a hypothetical M 7.0 earthquake. In some cases, the lateral response of the model exceeds the isolation gap, indicating that the displacement barrier would be impacted.In order to further study base-isolated buildings when the isolation bearings undergo large displacements the (TBIB) model is used and the computer program 2D-BUMP is developed. This program includes the effects of a fully nonlinear superstructure, nonlinear springs acting as displacement barriers which engage at specified distances, and a tri-linear model for the elastomeric bearings. Using this model, several conclusions are drawn regarding the probable areal extent of damaging near-source ground motions from the M 7.0 event, as well as the behavior of base-isolated structures due to these near-source long-period ground motions.
机译:当前的研究包括两个主要部分。第一部分包括对南加州现有的三座基础隔离建筑物的识别和分析。识别和分析利用了过去地震中这些结构的记录运动。系统识别对于了解结构进入非线性领域的程度及其性能变化有帮助。模型是在假设完全弹性的三维上层结构的基础上构造的,并为隔离轴承提供了理想的双线性滞后元素。轴承模型中使用的属性取自安装之前的实际轴承测试。然后,通过比较使用各种记录的地基运动计算出的模型响应与实际结构的记录响应来验证模型。对模型进行了调整,以最大程度地减少几个响应量的误差。第二部分包含计算机模拟,使典型的基础隔震建筑(TBIB)受到两类地震动的影响。第一个是过去发生的中到大地震的近源记录运动采样。第二个是为假设的M 7.0地震生成的一组合成近源运动。在某些情况下,模型的横向响应超出了隔离间隙,表明位移障碍会受到影响。为了进一步研究当隔离支座承受大位移时基础隔离的建筑物,使用(TBIB)模型和计算机开发了2D-BUMP程序。该程序包括完全非线性的上部结构,充当位移障碍的非线性弹簧(在指定距离处接合)以及弹性体轴承的三线性模型的影响。使用该模型,得出了一些有关M 7.0事件破坏近源地震动的可能区域范围以及由于这些近源长周期地震动引起的基础隔离结构的行为的结论。

著录项

  • 作者

    Halling Marvin Wilford;

  • 作者单位
  • 年度 1999
  • 总页数
  • 原文格式 PDF
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  • 入库时间 2022-08-20 20:18:37

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