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Vibration-based damage monitoring in model plate-girder bridges under uncertain temperature conditions

机译:不确定温度条件下模型梁桥中基于振动的损伤监测

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摘要

Dynamic modal parameters are appealing features for a prompt diagnosis of structural conditions, since they are relatively simple to measure and utilize. The feasibility of using them for damage detection, however, is limited when their changes go undisclosed due to uncertain temperature conditions, particularly for large structures. In this paper, a vibration-based damage monitoring scheme to give warning of the occurrence, the location, and the severity of damage under temperature-induced uncertainty conditions is proposed. Firstly, experiments on a model plate-girder bridge, for which a set of modal parameters were measured under uncertain temperature conditions, are described. Secondly, a damage warning model is selected to statistically identify the occurrence of damage, by recognizing the patterns of damage-driven changes in natural frequencies of the test structure, and by distinguishing temperature-induced off-limits. Thirdly, a frequency-based damage index method based on the concept of modal strain energy is implemented into the test structure to predict the location and the severity of damage. In order to adjust the temperature-induced changes in natural frequencies that are used for damage detection, a set of empirical frequency correction formulae are derived from the relationship between temperature and frequency ratio.
机译:动态模态参数是快速诊断结构条件的诱人特征,因为它们相对容易测量和利用。但是,由于不确定的温度条件(特别是对于大型结构)而未公开其变化时,将它们用于损坏检测的可行性受到限制。本文提出了一种基于振动的损伤监测方案,该方案可以在温度引起的不确定性条件下对损伤的发生,位置和严重程度进行警告。首先,描述了在板梁桥模型上的实验,该模型在不确定的温度条件下测量了一组模态参数。其次,选择损坏预警模型,以通过识别测试结构自然频率中损坏驱动的变化模式并区分温度引起的超限来统计地识别损坏的发生。第三,将基于模态应变能概念的基于频率的损伤指数方法应用于测试结构中,以预测损伤的位置和严重程度。为了调整温度引起的固有频率变化(用于损坏检测),从温度和频率比之间的关系中得出了一组经验频率校正公式。

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