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An Experimental Study on Fiber Bragg Grating-Point Heat Source Integration System for Seepage Monitoring

机译:渗透监测纤维布拉格光栅点热源集成系统的实验研究

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摘要

Monitoring results of the linear heat source (LHS) method are generally affected by infiltration angle. In order to solve this problem, a novel point heat source (PHS) seepage integration system was designed in this study based on the spherical symmetry of PHS. Each sensing-heating element consisting of a fiber Bragg grating (FBG) temperature sensor, and a ceramic heating tube was enclosed in a copper tube. Several sensing-heating elements that were arranged in series in a monitoring tube, a regulated power supply, and a FBG demodulator constituted the PHS seepage monitoring system. Calibration tests were carried out under different magnitudes and directions of seepage velocity. The proposed PHS seepage monitoring system effectively eliminated the influences of infiltration angle. The magnitude of the seepage identification index maintained a certain correlation with seepage velocity. Finally, a scheme for improving the sensitivity of the proposed monitoring system was discussed.
机译:线性热源(LHS)方法的监测结果通常受渗透角的影响。为了解决这个问题,基于PHS的球面对称,在该研究中设计了一种新的点热源(PHS)渗流集成系统。每个传感加热元件由光纤布拉格光栅(FBG)温度传感器组成,陶瓷加热管封装在铜管中。在监测管中串联布置的几个传感加热元件,调节电源和FBG解调器构成了PHS渗流监测系统。在不同的幅度和渗流速度方向下进行校准测试。所提出的PHS渗流监测系统有效地消除了渗透角的影响。渗流识别指数的大小与渗流速度保持了一定的相关性。最后,讨论了提高所提出的监测系统的灵敏度的方案。

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