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Fiber Bragg grating sensors for structural health monitoring of Tsing Ma bridge : Background and experimental observation

机译:用于青马大桥结构健康监测的光纤布拉格光栅传感器:背景和实验观察

摘要

The rapid expansion of the optical fiber telecommunication industry due to the explosion of the Internet has substantially driven down the cost of optical components, making fiber optic sensors more economically viable. In addition, the rapid development of fiber-optic sensors, particularly the fiber Bragg grating (FBG) sensors offers many advantages and capability that could not be achieved otherwise. In the past few years, fiber Bragg grating sensors have attracted a lot of interest and they are being used in numerous applications. This paper describes the FBG sensors developed for structural health monitoring, and were installed on Hong Kong's landmark Tsing Ma bridge (TMB), which is the world longest (1377 m) suspension bridge that carried both railway and regular road traffic. Forty FBG sensors divided into three arrays were installed on the hanger cable, rocker bearing and truss girders of the TMB. The objectives of the study are to investigate the feasibility of using the developed FBG sensors for structural health monitoring, via monitoring the strain of different parts of the TMB under both the railway and highway loads as well as comparing the FBG sensors' performance with the conventional structural health monitoring system - Wind and Structural Health Monitoring System (WASHMS) that has been operating at TMB since the bridge's commissioning in May 1997. The experimental observations in this project show that the results using FBG sensors were in excellent agreement with those acquired by WASHMS.
机译:由于互联网的爆炸,光纤电信行业的迅速发展已大大降低了光学组件的成本,从而使光纤传感器在经济上更具可行性。另外,光纤传感器,特别是光纤布拉格光栅(FBG)传感器的飞速发展提供了许多其他优势和能力,而这些是其他方面无法实现的。在过去的几年中,布拉格光纤光栅传感器引起了人们的极大兴趣,并且它们被用于许多应用中。本文介绍了为结构健康监控而开发的FBG传感器,这些传感器安装在香港地标性的青马大桥(TMB)上,这是世界上最长的(1377 m)悬索桥,既可进行铁路运输又可进行常规道路交通。在TMB的悬挂电缆,摇杆轴承和桁架梁上安装了40个FBG传感器,分为三个阵列。这项研究的目的是通过监视铁路和公路负荷下TMB不同部分的应变以及将FBG传感器的性能与常规传感器进行比较,来研究使用开发的FBG传感器进行结构健康监测的可行性。结构健康监测系统-自桥梁于1997年5月启用以来,风和结构健康监测系统(WASHMS)一直在TMB运行。该项目中的实验观察结果表明,使用FBG传感器的结果与WASHMS获得的结果非常吻合。

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