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Damage detection of steel girder railway bridges utilizing operational vibration response

机译:利用运行振动响应的钢梁铁路桥梁损伤检测

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摘要

In this paper, we develop a damage identification framework based on acceleration responses for railroad bridges. The methodology uses sensor-clustering-based time series analysis of bridge acceleration responses to the motion of the train. The results are expressed in terms of damage features, and damage to the bridge is investigated by observing the magnitude of these damage features. The investigation demonstrates the damage features by comparing the fit ratios of locations of interest so that damage can be identified and located and the relative severity of the damage assessed. The damage cases considered are stiffness loss, moment capacity reduction, and change in boundary conditions. In this study, a finite element analysis of a railway bridge model is used to verify our methodology. Our findings show that the proposed damage detection framework is very promising for continuously assessing the condition of railway bridges and thus will facilitate early detection of potential structural damage. This will be valuable for infrastructure owners seeking to develop more economical and effective maintenance strategies.
机译:在本文中,我们开发了基于加速度响应的铁路桥梁损伤识别框架。该方法使用基于传感器群集的时间序列分析来分析桥梁加速度对列车运动的响应。结果以损伤特征表示,并通过观察这些损伤特征的大小来研究桥梁的损伤。该研究通过比较感兴趣位置的拟合比来证明损坏特征,以便可以识别和定位损坏并评估损坏的相对严重程度。考虑的损坏情况包括刚度损失,弯矩承载力减小以及边界条件的变化。在这项研究中,铁路桥梁模型的有限元分析被用来验证我们的方法。我们的发现表明,提出的损伤检测框架对于不断评估铁路桥梁的状况非常有前途,因此将有助于及早发现潜在的结构损伤。这对于寻求开发更经济,有效的维护策略的基础架构所有者而言非常有价值。

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