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Application on Seepage Monitoring by Multi-point Optical Fiber Grating Temperature Measurement System

机译:多点光纤光栅测温系统在渗流监测中的应用

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摘要

The structure of the multi-point Fiber Bragg Grating (FBG) temperature measurement system is presented in this paper. It uses the wavelength demodulation method which applies In GaAs detector array to measure the light intensity to monitor the situation of the seepage in the dam. According to the laboratory data, analyze the possibility of the multi-point fiber grating sensor system and the reliability of the measured data, the result shows that the wavelength-temperature response sensitivity of the fiber grating sensor can reach 0.0091 nm/°C of the temperature field in the dam. Using the electric heat pulse method to heat the soil around the sensors is adopted in engineering application, it forms the temperature difference with the water, the engineering result shows that the method which uses fiber grating to detect temperature difference can apply to monitor seepage. Consequently, this system can realize the positioning of concentrated seepage points in the dam and automatic monitoring. Compared with conventional instruments, the fiber grating sensing monitoring system has obvious advantages in resistance to thunderbolts and disturbances.
机译:本文介绍了多点光纤布拉格光栅(FBG)温度测量系统的结构。它采用波长解调方法,该方法在GaAs检测器阵列中应用,以测量光强度,以监测坝体中的渗漏情况。根据实验室数据,分析了多点光纤光栅传感器系统的可能性和实测数据的可靠性,结果表明该光纤光栅传感器的波长-温度响应灵敏度可以达到0.0091 nm / f。大坝内温度场的°C。工程应用中采用电热脉冲法加热传感器周围的土壤,与水形成温差,工程结果表明,采用光纤光栅检测温差的方法可用于监测渗流。因此,该系统可以实现大坝中集中渗流点的定位和自动监测。与传统仪器相比,光纤光栅传感监控系统在抗雷电和干扰方面具有明显的优势。

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