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Distributed fibre optic sensors for advanced structural health monitoring of FRP composite bridge

机译:用于FRP复合材料桥梁高级结构健康监测的分布式光纤传感器

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Considering the worldwide recognized advantages of fibre optic sensors as measuring devices in structural health monitoring (SHM) of bridges and the unique ability to measure the long range distributed strain and temperature along the entire bridge superstructure, the distributed fibre optic sensors (DFOS) technology was chosen for the advanced SHM system of the first Polish FRP composite bridge. To develop an understanding of the long-term performance of the FRP bridge, a monitoring scheme utilizing DFOSs was implemented to assess any changes in the bridge structural behaviour in service. The monitored FRP bridge is a simply supported structure with four U- girders bonded with sandwich deck panels. The initial results of the SHM with the DFOS technology are the main subject of the paper. Analysis of the results obtained under proof tests in the field proved the effectiveness of the distributed fibre optic sensors for the SHM purposes. Wide range of practical problems related to sensor installation, fibre connection and data processing were successfully solved in the pilot field application. The smart Rayleigh sensors can ensure an acceptable measurement accuracy, thereby providing reliable strains referring to time-dependent behaviour of the FRP bridge span to assess the safety and serviceability of the FRP bridge.
机译:考虑到光纤传感器作为桥梁结构健康监测(SHM)测量设备的世界公认优势,以及测量整个桥梁上部结构的长距离分布应变和温度的独特能力,第一座波兰FRP复合材料桥梁的先进SHM系统选择了分布式光纤传感器(DFOS)技术。为了了解FRP桥梁的长期性能,实施了利用DFOSs的监测方案,以评估在役桥梁结构性能的任何变化。受监控的FRP桥梁是一个简单支撑结构,由四根U形梁与夹层桥面板粘结而成。采用DFOS技术的SHM的初步结果是本文的主要主题。对现场验证试验结果的分析证明了分布式光纤传感器用于SHM的有效性。在中试现场应用中,成功地解决了与传感器安装、光纤连接和数据处理相关的各种实际问题。智能瑞利传感器可确保可接受的测量精度,从而提供参考FRP桥梁跨度随时间变化行为的可靠应变,以评估FRP桥梁的安全性和可用性。

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