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Parameter identification of torsionally coupled shear buildings from earthquake response records

机译:基于地震反应记录的扭剪建筑参数识别

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This paper presents an efficient procedure to determine the natural frequencies, modal damping ratios and mode shapes for torsionally coupled shear buildings using earthquake response records. It is shown that the responses recorded at the top and first floor levels are sufficient to identify the dominant modal properties of a multistoried torsionally coupled shear building with uniform mass and constant eccentricity even when the input excitation is not known. The procedure applies eigenrealization algorithm to generate the state-space model of the structure using the cross-correlations among the measured responses. The dynamic characteristics of the structure are determined from the state-space realization matrices. Since the mode shapes are obtained only at the instrumented floor (top and first floors) levels, a new mode shape interpolation technique has been proposed to estimate the mode shape coefficients at the remaining floor levels. The application of the procedure has been demonstrated through a numerical experiment on an eight-storied torsionally coupled shear building subjected to earthquake base excitation. The results show that the proposed parameter identification technique is capable of identifying dominant modal parameters and responses even with significant noise contamination of the response records.
机译:本文提出了一种有效的程序,可以使用地震响应记录来确定扭剪建筑的固有频率,模态阻尼比和模态形状。结果表明,即使在未知输入激励的情况下,在顶层和一楼记录的响应也足以识别具有均匀质量和恒定偏心率的多层扭转耦合剪力建筑的主导模态特性。该程序应用本征实现算法,使用测量响应之间的互相关来生成结构的状态空间模型。根据状态空间实现矩阵确定结构的动态特性。由于仅在所装备的地板(顶层和第一层)级别获得模式形状,因此提出了一种新的模式形状插值技术来估计其余楼层级别的模式形状系数。该程序的应用已通过数值实验在受到地震基础激励的八层扭转耦合剪力建筑上得到了证明。结果表明,所提出的参数识别技术即使在响应记录受到显着噪声污染的情况下,也能够识别主要的模态参数和响应。

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