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FBG-Based Monitoring of Geohazards: Current Status and Trends

机译:基于FBG的地质灾害监测:现状和趋势

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摘要

In recent years, natural and anthropogenic geohazards have occured frequently all over the world, and field monitoring is becoming an increasingly important task to mitigate these risks. However, conventional geotechnical instrumentations for monitoring geohazards have a number of weaknesses, such as low accuracy, poor durability, and high sensitivity to environmental interferences. In this aspect, fiber Bragg grating (FBG), as a popular fiber optic sensing technology, has gained an explosive amount of attention. Based on this technology, quasi-distributed sensing systems have been established to perform real-time monitoring and early warning of landslides, debris flows, land subsidence, earth fissures and so on. In this paper, the recent research and development activities of applying FBG systems to monitor different types of geohazards, especially those triggered by human activities, are critically reviewed. The working principles of newly developed FBG sensors are briefly introduced, and their features are summarized. This is followed by a discussion of recent case studies and lessons learned, and some critical problems associated with field implementation of FBG-based monitoring systems. Finally the challenges and future trends in this research area are presented.
机译:近年来,自然和人为地质灾害在世界各地频繁发生,为了减轻这些风险,实地监测正变得越来越重要。然而,用于监视地质灾害的常规岩土工程仪器具有许多缺点,例如精度低,耐久性差以及对环境干扰的敏感性高。在这方面,作为一种流行的光纤传感技术,光纤布拉格光栅(FBG)引起了人们的极大关注。基于这种技术,已经建立了准分布式传感系统,以对滑坡,泥石流,地面沉降,地裂缝等进行实时监测和预警。在本文中,对使用FBG系统监测不同类型的地质灾害(尤其是由人类活动引发的地质灾害)进行的最新研究和开发活动进行了严格的综述。简要介绍了新开发的FBG传感器的工作原理,并概述了它们的功能。接下来是对近期案例研究和经验教训的讨论,以及与基于FBG的监视系统的现场实施相关的一些关键问题。最后介绍了该研究领域中的挑战和未来趋势。

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