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Conceptual damage-sensitive features for structural health monitoring: Laboratory and field demonstrations

机译:结构健康监测的概念损伤敏感功能:实验室和现场演示

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摘要

The use of damage-sensitive features to evaluate structural condition or health is a very critical aspect of structural health monitoring. The purpose of this paper is to investigate the potential of two different damage-sensitive features for detecting damage. Different damage scenarios are simulated on a large-scale laboratory structure and a three-span highway bridge for demonstration. The features presented in this paper are the modal flexibility-based deflection and curvature both of which are obtained directly from dynamic properties. In the literature, flexibility associated with mode shapes and mode shapes curvatures have been mostly explored. In this study, multi-input-multi-output dynamic data are used to obtain modal flexibility, which is a close approximation to the actual flexibility. A main novelty is that the curvature is calculated from the deflected shapes using the modal flexibility as opposed to using modal vectors. In this paper, the theory of the methodology is explained and then experimental studies and results are presented. For the experimental studies, the laboratory specimen and the three-span bridge were gradually damaged. It is shown that both deflection and curvature are conceptual and physically meaningful features for damage detection and localization. The issues and the requirements for these features to perform successfully are also presented.
机译:使用损伤敏感功能来评估结构状况或健康状况是结构健康状况监测的非常关键的方面。本文的目的是研究两种对损伤敏感的特征在检测损伤中的潜力。在大型实验室结构和三跨高速公路桥梁上模拟了不同的破坏情景,以进行演示。本文介绍的特征是基于模态柔韧性的挠度和曲率,这两者都是直接从动态特性获得的。在文献中,与模态形状和模态曲率相关的柔韧性已被大量研究。在这项研究中,多输入多输出动态数据用于获得模态灵活性,这与实际灵活性非常接近。一个主要的新颖之处在于,与使用模态矢量不同,使用模态柔性从挠曲的形状计算曲率。在本文中,解释了方法论的理论,然后给出了实验研究和结果。为了进行实验研究,实验室标本和三跨桥逐渐受到破坏。结果表明,挠度和曲率都是损伤检测和定位的概念上和物理上有意义的特征。还介绍了要成功执行这些功能的问题和要求。

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