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Bayesian model updating of a 20-story office building utilizing operational modal analysis results

机译:利用运营模式分析结果对20层办公楼进行贝叶斯模型更新

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Most existing buildings are not equipped with long-term monitoring system. For the structural model updating and damage detection of this type of structures, ambient vibration test is popular as artificial excitation is not required. This article presents in detail the full-scale ambient vibration test, operational modal analysis, and model updating of a tall building. To capture the dynamic properties of the target 20-story building with limited number of sensors, a 15-setup ambient vibration test was designed to cover at least three measurement points (each consists of a vertical and two orthogonal horizontal measured degrees of freedom) for each selected floor. The modal parameters of each setup were extracted from the measured acceleration signals using a frequency domain decomposition method and were combined to form the global mode shape through the least-squares method. Due to the regularity of the building, a simple class of shear building models was employed to capture the dynamic characteristics of the building under lateral vibration. The identified modal parameters of the building were employed for the model updating of the shear building model to identify the distribution of inter-story stiffness. Since the "amount" of the measured information is small when compared to the "amount" of required information for identifying the uncertain parameters, the model updating problem is unidentifiable. To handle this problem, the Markov chain Monte Carlo-based Bayesian model updating method is employed in this study. The identified modal parameters revealed interesting features about the dynamic properties of the building. The well-matched results between model-predicted and identified modal parameters show the validity of the shear building model in this case study. This study provides valuable experience in the area of structural model updating and structural health monitoring.
机译:现有的大多数建筑物都没有配备长期监控系统。对于这种类型结构的结构模型更新和损伤检测,由于不需要人工激励,因此环境振动测试很受欢迎。本文详细介绍了高层建筑的全面环境振动测试,运行模态分析和模型更新。为了使用有限数量的传感器捕获目标20层建筑物的动态特性,设计了15个设置的环境振动测试,以覆盖至少三个测量点(每个测量点包括一个垂直和两个正交的水平测量自由度),用于每个选定的楼层。使用频域分解方法从测得的加速度信号中提取每种设置的模态参数,并通过最小二乘法将其组合起来以形成全局模式形状。由于建筑物的规律性,采用了一类简单的剪力建筑物模型来捕获建筑物在横向振动下的动态特性。所识别的建筑物模态参数用于剪切建筑模型的模型更新,以识别层间刚度的分布。由于与用于识别不确定参数的所需信息的“数量”相比,测量信息的“数量”较小,因此模型更新问题无法识别。为了解决这个问题,本文采用了基于马尔可夫链蒙特卡罗的贝叶斯模型更新方法。确定的模态参数揭示了有关建筑物动态特性的有趣特征。在此案例研究中,模型预测的模态参数与已识别的模态参数之间的良好匹配结果表明了剪切构建模型的有效性。这项研究为结构模型更新和结构健康监测领域提供了宝贵的经验。

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