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Health monitoring of flexural steel structures based on distributed fibre optic sensors

机译:基于分布式光纤传感器的挠性钢结构健康监测

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In our previous study, a distributed long-gauge fibre optic sensing system (with the ability to obtain effective average strain, or macro-strain, distributions) for practical adaptation in civil structural health monitoring was developed and verified. The present paper is devoted to proposing an integrated health monitoring scheme for elastic beam-like structures, where flexure dominates structural responses, based on static testing and measurements using the developed sensors. A series of experimental investigations on steel beams with different levels of damage are first carried out. The static strain measurements from distributed sensors are characterised and some concerns on the data processing and feature extraction are discussed. On the basis of the extracted features, structural health monitoring (SHM) investigations are deployed in three parts: damage identification with no requirement for a structural analytical model, parametric estimation based on finite element (FE) models, and evaluation of structural global behaviour. By comparing to traditional transducers such as linear variable displacement transducers (LVDTs) and foil ‘point’ strain gauges, the ability and ascendancy of the sensors developed here for SHM purposes are verified. A comprehensive health monitoring strategy for steel flexural structures based on the distributed strain sensors array is proposed finally.
机译:在我们之前的研究中,开发并验证了一种用于民用结构健康监测的实际适应性的分布式长规格光纤传感系统(具有获得有效平均应变或大应变分布的能力)。本文致力于基于静态测试和使用已开发的传感器进行的测量,针对弹性梁状结构提出一种综合健康监测方案,其中挠曲支配着结构响应。首先对损伤程度不同的钢梁进行了一系列实验研究。表征了来自分布式传感器的静态应变测量,并讨论了有关数据处理和特征提取的一些问题。基于提取的特征,结构健康监测(SHM)研究分为三个部分:不需要结构分析模型的损伤识别,基于有限元(FE)模型的参数估计以及结构全局行为的评估。通过与诸如线性可变位移传感器(LVDT)和箔“点”应变仪之类的传统传感器进行比较,可以验证此处开发用于SHM的传感器的能力和优越性。最后提出了一种基于分布式应变传感器阵列的钢结构挠曲健康监测策略。

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