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Assessment of environmental and nondestructive earthquake effects on modal parameters of an office building based on long-term vibration measurements

机译:基于长期振动测量的办公楼模态参数的环境和非破坏性地震影响评估

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摘要

Identification for the modal parameters of an instrumented office building using ambient vibration measurements is conducted in this study based on a recently developed stochastic subspace identification methodology equipped with an alternative stabilization diagram and a hierarchical sifting process. The identified results are then deliberately examined to recognize the dynamic features for quite a few dominant modes of this building structure including three pairs of closely-spaced modes. Making use of the collected three-month data including three seismic events, the analyzed results show that the root-mean-square vibration response is directly related to the wind speed and indirectly related to the air temperature under a specific condition. More importantly, it is discovered that the root-mean-square response is the dominant factor to induce the variation of modal parameters. Except for the torsional modes, all the other modal frequencies are highly correlated with the root-mean-square acceleration in a negative manner and the corresponding damping ratios also clearly display a positive correlation. Another crucial observation from this assessment is that the percentages of frequency variation in three months for most of the identified modes go beyond 10%. The effects of three nondestructive earthquakes are further traced to observe the tendencies of reducing the modal frequencies and raising the damping ratios, both with a variation level possibly increasing with the seismic intensity. But different from the effects of environmental factors, the changes in modal parameters caused by nondestructive earthquakes will vanish right after the seismic events.
机译:本研究基于配备有替代稳定图和分层筛分过程的最近开发的随机子空间识别方法,在本研究中进行了使用环境振动测量的仪表办公楼的识别。然后故意检查所识别的结果,以识别这种建筑结构的相当多种主导模式的动态特征,包括三对紧密间隔模式。利用包括三个地震事件的收集的三个月数据,分析结果表明,根平均方形振动响应与风速直接相关,并在特定条件下间接相关。更重要的是,发现根系平均方形响应是诱导模态参数变化的主导因素。除了扭转模式之外,所有其他模态频率与以负面方式的根均方加速度高度相关,并且相应的阻尼比也清楚地显示正相关。该评估的另一个重要观察是,大多数已识别模式的三个月内频率变化百分比超出10%。三个无损地地震的影响进一步追踪,观察减少模态频率并提高阻尼比的趋势,既可能随着地震强度增加的变化水平。但不同于环境因素的影响,在地震事件发生后,非破坏性地震引起的模态参数的变化将在抗震事件之后消失。

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