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首页> 外文期刊>Earthquake and structures: An International journal of earthquake engineering & earthquake effects on structures >Vibration characteristics change of a base-isolated building with semi-active dampers before, during, and after the 2011 Great East Japan earthquake
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Vibration characteristics change of a base-isolated building with semi-active dampers before, during, and after the 2011 Great East Japan earthquake

机译:2011年东日本大地震之前,之中和之后,具有半主动阻尼器的隔震建筑的振动特性变化

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摘要

Structural vibration characteristics of a semi-active base-isolated building were investigated using seismic observation records including those of the 2011 Great East Japan earthquake (Tohoku earthquake). Three different types of analyses were conducted. First, we investigated the long-term changes in the natural frequencies and damping factors by using an ARX model and confirmed that the natural frequency of the superstructure decreased slightly after the main shock of the Tohoku earthquake. Second, we investigated short-term changes in the natural frequencies and damping factors during the main shock by using the N4SID method and observed different transition characteristics between the first and second modes. In the second mode, in which the superstructure response is most significant, the natural frequency changed depending on the response amplitude. In addition, at the beginning of the ground motion, the identified first natural frequency was high possibly as a result of sliding friction. Third, we compared the natural frequencies and damping factors between the conditions of a properly functional semi-active control system and a nonfunctional system, by using the records of the aftershocks of the Tohoku earthquake. However, we could not detect major differences because the response was probably influenced by sliding friction, which had a more significant effect on damping characteristics than did the semi-active dampers.
机译:使用包括2011年东日本大地震(东北地震)在内的地震观察记录,研究了半主动隔震建筑的结构振动特性。进行了三种不同类型的分析。首先,我们使用ARX模型研究了固有频率和阻尼因子的长期变化,并确认了东北地震主震后上部结构的固有频率略有下降。其次,我们使用N4SID方法研究了主震过程中固有频率和阻尼因子的短期变化,并观察到第一和第二模式之间的过渡特性不同。在上部结构响应最显着的第二种模式下,固有频率根据响应幅度而变化。另外,在地面运动开始时,所确定的第一固有频率可能很高,这是由于滑动摩擦引起的。第三,我们利用东北地震余震的记录,比较了正常运行的半主动控制系统和非正常运行系统的状态之间的固有频率和阻尼因子。但是,我们无法检测出主要差异,因为响应可能受到滑动摩擦的影响,滑动摩擦对阻尼特性的影响比半主动阻尼更显着。

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