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Evaluation of a large-scale bridge strain, temperature and crack monitoring with distributed fibre optic sensors

机译:利用分布式光纤传感器评估大型桥梁的应变,温度和裂缝监测

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摘要

Many structures like bridges are ageing and the necessity to measure the uncertain parameters is relevant. Crack-related parameters can be measured with traditional techniques like crack gauges and displacement transducers. A method that can detect and localise cracks as well as measure crack width is most favourable. Several distributed and quasi-distributed systems were introduced to the market and tested in recent years. This paper presents a large-scale Structural Health Monitoring project based on stimulated Brillouin scattering in optical fibres for an old bridge. The Gotaalv Bridge is a continuous steel girder bridge with concrete bridge deck. Steel girders suffer from fatigue and mediocre steel quality and some severe cracking and also a minor structural element collapse have taken place. The system installed on the bridge measures strain profiles along the whole length of the bridge and detects cracks that are wider than 0.5 mm. Procedures like factory acceptance test, site acceptance test, laboratory testing and field testing are presented and analysed. Innovative technology was developed, tested and applied on the bridge. Heuristic knowledge was collected; conclusions are presented and discussed for future development.
机译:许多结构(如桥梁)都在老化,因此测量不确定参数的必要性是相关的。裂纹相关的参数可以使用诸如裂纹仪和位移传感器之类的传统技术进行测量。一种最适合检测和定位裂纹并测量裂纹宽度的方法。几种分布式和准分布式系统已投放市场,并在最近几年进行了测试。本文提出了一个大型结构健康监测项目,该项目基于旧桥在光纤中受激布里渊散射的影响。 Gotaalv桥是具有混凝土桥面板的连续钢梁桥。钢梁受疲劳和钢质中等的影响,并且出现了一些严重的开裂,并且还发生了轻微的结构性倒塌。安装在桥上的系统可测量桥整个长度上的应变曲线,并检测大于0.5 mm的裂缝。介绍并分析了工厂验收测试,现场验收测试,实验室测试和现场测试等程序。开发,测试并在桥梁上应用了创新技术。收集了启发式知识;提出并讨论了结论,以供将来发展之用。

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