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Seismic fragility estimates for reinforced concrete framed buildings.

机译:钢筋混凝土框架建筑物的地震易损性估算。

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摘要

Gravity load designed (GLD) reinforced concrete (RC) buildings represent a common type of construction in the Mid-America Region. These buildings have limited lateral resistance and are susceptible to story mechanisms during earthquake loading. Fragility estimates are developed to assess the seismic vulnerability of GLD RC buildings in the Mid-America Region. Fragility is defined as the conditional probability of reaching or exceeding a performance level for a given earthquake intensity measure.; Five sample buildings of various story heights (1, 2, 3, 6, and 10 stories) are used to represent generic RC frame buildings of 1 to 10 stories tall. A Bayesian methodology is used to develop probabilistic demand models to predict the maximum inter story drift given the spectral acceleration at the fundamental period of the building. The unknown parameters of the demand models are estimated using the simulated response data obtained from nonlinear time history analyses of the structural models for a suite of synthetic ground motions, developed for Memphis, Tennessee. Seismic structural capacity values are selected corresponding to the performance levels or damage states as specified in FEMA-356 and as computed by nonlinear pushover analyses.; For the sample buildings, fragility estimates are developed using the predicted drift demands and structural capacity values. Confidence bounds are developed to represent the epistemic uncertainty inherent in the fragility estimates. In addition, bivariate fragility estimates, formulated as a function of spectral acceleration and the fundamental building period, are developed from the fragility estimates of the individual buildings. The bivariate fragilities can be used to quantify the seismic vulnerability of GLD RC frame buildings of 1 to 10 stories. Using the Bayesian approach, a framework is developed to update the analytical fragility estimates using observed damage data or experimental test data. As an illustration of the updating framework, the analytical bivariate fragility estimates for the sample buildings in the Mid-America Region are updated using the damage data obtained from 1994 Northridge, California earthquake.; Furthermore, to investigate and demonstrate the increase in seismic performance of the GLD RC frame buildings, the columns of the 2 and 3 story buildings are retrofitted by column strengthening. Fragility estimates developed for the retrofitted buildings show the effectiveness of the retrofit technique by the improved seismic performance of GLD RC frame buildings.
机译:重力荷载(GLD)钢筋混凝土(RC)建筑物是中美洲地区的一种常见建筑类型。这些建筑物的侧向阻力有限,并且在地震荷载作用下易受故事机制的影响。制定易碎性评估以评估中美洲地区GLD RC建筑物的地震易损性。易碎性定义为对于给定的地震烈度测度达到或超过性能水平的条件概率;五个具有不同楼层高度(1、2、3、6和10层)的示例建筑物用于表示1到10层高的通用RC框架建筑物。使用贝叶斯方法来开发概率需求模型,以在建筑物基本周期的频谱加速度下预测最大层间漂移。需求模型的未知参数是使用从田纳西州孟菲斯开发的一组合成地面运动的结构模型的非线性时程分析中获得的模拟响应数据进行估算的。选择与FEMA-356中规定的性能水平或破坏状态相对应的抗震结构能力值,并通过非线性推覆分析计算得出。对于样本建筑物,使用预测的漂移需求和结构承载力值来开发易损性估计。建立置信界限以表示易碎性估计中固有的认识论不确定性。此外,根据各个建筑物的易损性估算值,开发了根据光谱加速度和基本建筑周期制定的双变量易损性估算值。双变量脆弱性可用于量化1到10层GLD RC框架建筑物的地震易损性。使用贝叶斯方法,开发了一个框架,以使用观察到的破坏数据或实验测试数据更新分析性脆性估计。作为更新框架的说明,中美洲地区样本建筑的分析性双变量脆弱性估计值是使用从1994年加利福尼亚州北岭地震获得的破坏数据进行更新的。此外,为调查和论证GLD RC框架建筑物的抗震性能的提高,对2层和3层建筑物的柱子进行了柱加固。为翻新建筑物开发的易碎性评估通过提高GLD RC框架建筑物的抗震性能显示了翻新技术的有效性。

著录项

  • 作者

    Ramamoorthy, Sathish Kumar.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 139 p.
  • 总页数 139
  • 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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