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Parameter identification of a 9-story building for earthquake damage detection

机译:用于地震破坏检测的9层建筑物的参数识别

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To detect and evaluate the earthquake damage of a 9-story reinforcement concrete building in the main shock of Miyagi-ken Earthquake, Sep. 15, 1998, the parameters of the building are identified and analyzed by using off-line system identification method from the structural strong motion records in the foreshock and aftershock before and after the main shock event. The results show that the structural parameters can be identified accurately from the seismic response data in small earthquakes during which the structure can be assumed as the time-invariant system. By comparing the parameters identified from the small earthquakes before and after the main shock, the structural damage in the main shock can be detected and evaluated primarily. It is found that the damage occurrence can be detected from the decreasing of the natural frequency and equivalent stiffness of the building, whereas the damping ratios are not suitable to detect the damage because the variations of damping ratios of the building are irregular after damaged in the main shock. The results can be referenced by the structural earthquake damage detection, diagnosis, and related work.
机译:为了检测和评估1998年9月15日宫城县地震主震中9层钢筋混凝土建筑物的地震破坏,采用离线系统识别方法对建筑物的参数进行识别和分析。在主要冲击事件之前和之后的前震和余震中的结构性强运动记录。结果表明,从小地震的地震反应数据中可以准确地确定结构参数,在此期间可以将结构假定为时不变系统。通过比较从主震之前和之后的小地震中识别出的参数,可以初步检测和评估主震中的结构破坏。发现可以通过降低建筑物的固有频率和等效刚度来检测损坏的发生,而阻尼比不适用于检测损坏,因为建筑物的阻尼比在受到破坏后是不规则的。主震。该结果可为结构地震破坏的检测,诊断和相关工作提供参考。

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