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Probabilistic seismic response analysis of a 3-D reinforced concrete building

机译:3D钢筋混凝土建筑的概率地震响应分析

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This paper presents the probabilistic seismic demand analysis with respect to seismic input uncertainty only of a 3-D reinforced concrete building model subjected to three-component earthquake ground motion excitation. Response history analyses are carried out on a nonlinear frame model. Probability distributions are assumed for the ground motion Intensity Measure (IM) taken as the linear 5% damped elastic spectral acceleration at the fundamental period of the structure. Part of the framework of the so-called Performance Based Earthquake Engineering (PBEE) methodology developed by the Pacific Earthquake Engineering Research (PEER) Center is used in this study. This paper has two main objectives. The first objective is to perform a probabilistic demand analysis of an existing building conditional on the ground motion IM. The second objective is to use the results obtained from this existing testbed, with real-world complexities, to demonstrate the deficiency of the PEER PBEE methodology when using a scalar ground motion IM for 3-D structural models. This last objective shows the need for improving the definition of the seismic IM in the PBEE methodology for the general case of 3-D structures subjected to multidirectional input ground motions. To this effect, an ensemble of natural ground motion records is used to represent the inherent randomness in ground motion time-histories (i.e., record-to-record variability). The statistical correlation of different Engineering Demand Parameters (EDPs) with a set of IMs, taken as the 5% damped spectral accelerations at different periods for two horizontal ground motion components, is investigated in order to assess the dispersion in the EDPs due to different ground motion records. Some statistical correlation coefficients are found to be high, indicating that the dispersion of the EDPs is heavily influenced by the spectral content at periods different from the fundamental period. This result points to the need for using vector-valued ground motion Intensity Measures in the PBEE methodology currently proposed by PEER.
机译:本文仅针对受三分量地震地震动激励的3-D钢筋混凝土建筑模型,针对地震输入不确定性提出概率地震需求分析。响应历史分析是在非线性框架模型上进行的。假定地面运动强度测度(IM)的概率分布为结构基本周期的线性5%阻尼弹性频谱加速度。本研究使用了太平洋地震工程研究(PEER)中心开发的所谓基于性能的地震工程(PBEE)方法的部分框架。本文有两个主要目标。第一个目标是对以地面运动IM为条件的现有建筑物进行概率需求分析。第二个目标是使用从现有测试台获得的结果,并结合实际操作,以证明当对3D结构模型使用标量地面运动IM时,PEER PBEE方法的不足。最后一个目标表明,对于经受多向输入地面运动的3-D结构的一般情况,需要改进PBEE方法中地震IM的定义。为此,使用一组自然地面运动记录来表示地面运动时间历史记录中的固有随机性(即记录之间的可变性)。研究了不同工程需求参数(EDP)与一组IM的统计相关性,以两个水平地面运动分量在不同时期的5%阻尼频谱加速度为研究对象,以评估由于不同地面而导致的EDP中的色散运动记录。发现一些统计相关系数很高,这表明EDP的色散在不同于基本周期的周期中受到频谱含量的严重影响。该结果表明有必要在PEER当前提出的PBEE方法中使用矢量值地面运动强度测度。

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