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Seismic response analysis and modal identification of a full-scale five-story base-isolated building tested on the NEES@UCSD shake table

机译:地震响应分析和模态识别全尺寸五层底座隔离建筑物在NEES @ UCSD Shake表上进行测试

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This paper presents the analysis of the seismic response and the identification of the dynamic properties of an equivalent linear time-invariant model of a full-scale five-story base-isolated reinforced concrete building tested on the unidirectional NEES@UCSD shake table. A sequence of seven scaled historic earthquake records was applied by the shake table to the building, progressively increasing the seismic demand on the structure and its nonstructural components and systems. The effects of the isolation system on elongating the predominant period of the building, concentrating the displacement in the isolation layer, and augmenting the energy dissipation capacity of the building system are investigated. Low-amplitude white noise (WN) base excitation tests were conducted before and after each seismic test and ambient vibration (AV) data were recorded continuously for a period of approximately sixteen days containing the sequence of seven seismic tests performed. Because of the low intensity of the white noise base and ambient excitations, a quasi-linear response of the base-isolated building is assumed, allowing the modal parameters of an equivalent linear viscously damped time-invariant model to be estimated from vibration data recorded during the WN and AV tests. Different state-of-the-art system identification methods, including output-only and input-output methods, are used to estimate the modal properties of the base-isolated building. Results show that the identified modal parameters obtained from different methods are in good agreement and that the assumption of quasi-linear response for each lowamplitude test is appropriate. The effects of the amplitude of the excitation, earthquake input motions, and environmental conditions are clearly evidenced by the changes induced in the estimated modal parameters of the building.
机译:本文介绍了地震响应的分析,并识别了在单向网元@ UCSD摇动台上测试的全尺寸五层底座钢筋混凝土建筑的等效线性时间不变模型的动态特性。摇动台对建筑物的一系列七种历史历史地震记录,逐渐增加了对结构的地震需求及其非结构组件和系统。研究了隔离系统对伸长的建筑物的主要周期,集中在隔离层中的位移,以及增强建筑系统的能量耗散能力。在每个地震测试和环境振动(AV)数据之前和之后进行低幅度白噪声(WN)励磁试验在含有七个地震检测序列的序列中连续地记录了大约十六天的时间。由于白噪声基础的低强度和环境激发,假设基座隔离建筑的准线性响应,允许从记录期间记录的振动数据估计等效线性敏感的时间不变模型的模态参数WN和AV测试。不同的最先进的系统识别方法,包括仅输出和输入输出方法,用于估计基座隔离建筑的模态属性。结果表明,从不同方法获得的识别的模态参数非常一致,并且每个低压测试的准线性响应的假设是合适的。估计建筑物的估计模态参数中诱导的变化明确证明了激发振幅,地震输入运动和环境条件的影响。

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