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Validation of bridge health monitoring system using temperature as a proxy for damage

机译:用温度验证桥梁健康监测系统作为损坏的代理

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摘要

In this paper, damage indicators are presented for bridges based on measured data collected under uncontrolled traffic conditions. The test bridge considered is a small stiff concrete culvert with low dynamics, making it suboptimal for monitoring with accelerometers. Largely static strain responses are measured, with the variability in the vehicle weights and configurations addressed by handling the data in statistical terms. Continuously recorded temperature data are used in an alternative and innovative way to validate damage indicators. Temperature change causes stiffness change in concrete structures. It is posited that temperature can be used as a proxy for bridge damage as, while the effects are clearly different, both cause changes in flexural rigidity and therefore in bridge response to load. It is demonstrated here, using field data, that the damage indicators are sensitive to temperature change. Strain and temperature data for a 2-year period are obtained for a culvert bridge in Slovenia. The defined damage indicators are calculated for the strain data and validated using the simultaneously recorded temperature data. Two ways of using the proposed damage indicators together with the information about temperature for bridge structural health monitoring (SHM) are also presented: one is including the mean and standard deviation of the damage indicators and a compensation for the temperature effect and another to obtain directly the modifiedZscore, which is used for identifying outliers, and draw a 2D risk map having damage indicator and temperature on the two axes.
机译:在本文中,基于在不受控制的交通状况下收集的测量数据来提出桥梁的损坏指示。考试桥被认为是一种具有低动态的小僵硬涵洞,使其与加速度计监控的次优。测量大量静态应变响应,通过以统计术语处理数据来解决的车辆权重和配置中的可变性。连续记录的温度数据以替代和创新的方式使用来验证损坏指标。温度变化导致混凝土结构中的刚度变化。它被定位为桥梁损坏的温度可以用作桥梁损坏的代理,而这些效果显然是不同的,这两种都会导致弯曲刚度的变化,因此在桥梁响应负载中。这里使用现场数据证明损坏指示器对温度变化敏感的情况。为斯洛文尼亚的涵洞桥获得2年期间的应变和温度数据。定义的损坏指示符用于应变数据并使用同时记录的温度数据进行验证。还提出了使用所提出的损坏指标的两种方法以及关于桥梁结构健康监测(SHM)的温度的信息,包括损坏指示器的平均值和标准偏差,以及对温度效应的补偿和另一种直接获得用于识别异常值的修改ZScore,并绘制具有损坏指示器和两个轴的温度的2D风险贴图。

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