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Integrity monitoring of old steel bridge using fiber optic distributed sensors based on Brillouin scattering

机译:基于布里渊散射的光纤分布式传感器对旧钢桥的完整性监测

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Gotaalvbron, the bridge over Gota river, was built in thirties and is now more than seventy years old. The steel girders were cracked and two issues are in cause of steel cracking: fatigue and mediocre quality of the steel. The bridge authorities repaired the bridge and decided to keep it in service for the next fifteen years, but in order to increase the safety and reduce uncertainties related to the bridge performance an integrity monitoring system has been mandatory. The main issue related to selection of the monitoring system has been the total length of the girders which is for all the nine girders more than 9 km. It was therefore decided to monitor the most loaded five girders (total length of 5 km approximately) and logically a fiber optic distributed sensing system have been selected. For the first time a truly distributed fiber optic sensing system, based on Brillouin scattering effect, is employed on such large scale to monitor new crack occurrence and unusual strain development. The monitoring system itself, the monitoring strategy, challenges related to installation and the data management are presented in this paper.
机译:Gotaalvbron是Gota河上的桥梁,建于30年代,如今已有70多年的历史了。钢梁开裂,造成钢开裂的原因有两个:疲劳和中等质量的钢。桥梁当局对桥梁进行了维修,并决定在未来的15年内继续使用该桥梁,但是为了提高安全性并减少与桥梁性能相关的不确定性,必须使用完整性监控系统。与监测系统的选择有关的主要问题是大梁的总长度,对于所有9个以上的大梁,其长度都超过9 km。因此,决定监视最重的五个大梁(总长度大约为5 km),并且从逻辑上讲,已选择了光纤分布式传感系统。第一次大规模地使用基于布里渊散射效应的真正分布式光纤传感系统来监视新的裂纹发生和异常应变的发展。本文介绍了监视系统本身,监视策略,与安装和数据管理有关的挑战。

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