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A review of previous studies on the applications of optical fiber sensors in geotechnical health monitoring

机译:光纤传感器在岩土健康监测中的应用研究综述

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摘要

In recent decades, conventional electric instruments have already been widely used to monitor the performance of geotechnical structures. However, there are several inherent limitations of electric instruments for engineering including: electromagnetic interference, a large number of cables for multipoint measurement, signal loss in long distance transmission, and poor durability. Since the first Fiber Bragg Grating (FBG) sensor was fabricated in 1978, a significant progress has been made on the commercialization of optical fiber sensing technologies. In 1980s, a fully distributed sensing technology named Brillouin Optical Time Domain Analysis (BOTDA) has been proposed and developed for measuring strain and temperature. In this paper, the authors review previous studies on the development and application of fiber optic sensors. Based on the measured strains, various analysis methods were transferred to required parameters such as displacement, force and pressure which can more directly reflect the safety of geotechnical structures under complex engineering stress condition.
机译:在最近的几十年中,常规的电子仪器已经被广泛地用于监测岩土结构的性能。但是,用于工程学的电气设备存在一些固有的局限性,包括:电磁干扰,用于多点测量的大量电缆,长距离传输中的信号丢失以及耐用性差。自1978年制造出第一台光纤布拉格光栅(FBG)传感器以来,在光纤传感技术的商业化方面已取得了重大进展。在1980年代,已经提出并开发了一种称为“布里渊光学时域分析(BOTDA)”的完全分布式传感技术,用于测量应变和温度。在本文中,作者回顾了以前关于光纤传感器的开发和应用的研究。根据测得的应变,将各种分析方法转换为所需的参数,例如位移,力和压力,这些参数可以更直接地反映在复杂工程应力条件下岩土结构的安全性。

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