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DAMAGE DETECTION OF RAILWAY BRIDGES USING STRAIN CORRELATION

机译:使用应变相关性损坏铁路桥梁的损伤检测

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Railway networks are among the most critical components of our transportation systems and maintenance of these networks is of the utmost importance. Bridges are vital links within the railway network and most of these bridges are approaching their design life. Also considering that axle loads have been increased several times during the past decades, developing effective Structural Health Monitoring (SHM) techniques for railway bridges is expected to help the infrastructure owners with their decision making strategies. In this context, developing specialized data analysis methodologies for railway bridges is the main objective of this study. In this paper, preliminary results of our ongoing efforts to develop a strain correlation based damage detection method for railway bridges are presented. This method offers an easier and faster way to locate the damage. First, a detailed finite element model (FEM) of a railway bridge is created. Then, this model is used to simulate and collect strain data under moving train loading for different structural conditions (healthy and damaged), which is then analyzed using a correlation based damage detection method previously introduced by the authors. The structural change (e.g. damage) in the bridge is assessed by comparing the correlation matrices. The comparison shows the changes in the correlation coefficients for each measurement location, so that structural changes can be detected and localized. Tracking the condition of the bridge continuously in this manner and early detection of potential structural changes are deemed very valuable for the infrastructure owners for developing more economical maintenance strategies and address the problems before they become too costly.
机译:铁路网络是我们运输系统最关键的组件之一,这些网络的维护是最重要的。桥梁是铁路网络内的重要环节,大多数这些桥梁正在接近他们的设计生活。还要考虑到在过去几十年中,轴载已有数次增加,有效的铁路桥梁的有效结构健康监测(SHM)技术有望帮助基础设施拥有其决策策略。在这种情况下,制定铁路桥梁的专业数据分析方法是本研究的主要目标。本文介绍了我们持续努力开发基于应变相关性的损伤检测方法的初步结果。此方法提供更容易和更快的方式来定位损坏。首先,创建铁路桥的详细有限元模型(FEM)。然后,该模型用于模拟和收集移动列车负载下的应变数据,用于不同的结构条件(健康和损坏),然后使用前面引入的基于相关的损伤检测方法分析。通过比较相关矩阵来评估桥中的结构变化(例如损坏)。比较示出了每个测量位置的相关系数的变化,从而可以检测和本地化结构改变。以这种方式连续跟踪桥的状况,并且早期发现潜在的结构变化对基础设施所有者来说非常有价值,以开发更经济的维护策略并在变得太昂贵之前解决问题。

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