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Truly Distributed Optical Fiber Sensors for Structural Health Monitoring: From the Telecommunication Optical Fiber Drawling Tower to Water Leakage Detection in Dikes and Concrete Structure Strain Monitoring

机译:真正分布式的光纤传感器,用于结构健康监测:从电信光纤抽水塔到堤坝漏水检测和混凝土结构应变监测

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摘要

Although optical fiber sensors have been developed for 30 years, there is a gap between lab experiments and field applications. This article focuses on specific methods developed to evaluate the whole sensing chain, with an emphasis on (i) commercially-available optoelectronic instruments and (ii) sensing cable. A number of additional considerations for a successful pairing of these two must be taken into account for successful field applications. These considerations are further developed within this article and illustrated with practical applications of water leakage detection in dikes and concrete structures monitoring, making use of distributed temperature and strain sensing based on Rayleigh, Raman, and Brillouin scattering in optical fibers. They include an adequate choice of working wavelengths, dedicated localization processes, choices of connector type, and further include a useful selection of traditional reference sensors to be installed nearby the optical fiber sensors, as well as temperature compensation in case of strain sensing.
机译:尽管光纤传感器已经开发了30年,但实验室实验和现场应用之间仍然存在差距。本文重点介绍为评估整个传感链而开发的特定方法,重点是(i)商业上可用的光电仪器和(ii)传感电缆。对于成功的现场应用,必须考虑成功配对这两个方面的其他一些注意事项。这些考虑因素在本文中得到了进一步的发展,并在堤坝和混凝土结构监测中的漏水检测的实际应用中进行了说明,并利用了基于光纤中瑞利,拉曼和布里渊散射的分布式温度和应变感应。它们包括工作波长的适当的选择,专用本地化流程,连接器类型的选择,并且还包括传统的参考传感器的有用的选择要安装在附近的光纤传感器,以及在应变传感的情况下的温度补偿。

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