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Identification, Model Updating, and Response Prediction of an Instrumented 15-Story Steel-Frame Building

机译:仪器化15层钢框架建筑的识别,模型更新和响应预测

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摘要

Identification of the modal properties of the UCLA Factor Building, a 15-story steel moment-resisting frame, is performed using low-amplitude earthquake and ambient vibration data. The numerical algorithm for subspace state-space system identification is employed to identify the structural frequencies, damping ratios, and mode shapes corresponding to the first nine modes. The frequencies and mode shapes identified based on the data recorded during the 2004 Parkfield earthquake (M_w=6.0) are used to update a three-dimensional finite element model of the building to improve correlation between analytical and identified modal properties and responses. A linear dynamic analysis of the updated model excited by the 1994 Northridge earthquake is performed to assess the likelihood of structural damage.
机译:使用低振幅地震和环境振动数据,对15层钢制抗弯框架UCLA因子大楼的模态特性进行识别。子空间状态空间系统识别的数值算法被用来识别与前九种模式相对应的结构频率,阻尼比和模式形状。根据2004年Parkfield地震(M_w = 6.0)记录的数据确定的频率和振型,用于更新建筑物的三维有限元模型,以改善分析和确定的振型特性与响应之间的相关性。对1994年Northridge地震激发的更新模型进行了线性动力学分析,以评估结构破坏的可能性。

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