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A Review of Distributed Fibre Optic Sensors for Geo-Hydrological Applications

机译:地质水文应用分布式光纤传感器的综述

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Distributed optical fibre sensing, employing either Rayleigh, Raman, or Brillouin scattering, is the only physical-contact sensor technology capable of accurately estimating physical fields with spatial continuity along the fibre. This unique feature and the other features of standard optical fibre sensors (e.g., minimal invasiveness and lightweight, remote powering/interrogating capabilities) have for many years promoted the technology to be a promising candidate for geo-hydrological monitoring. Relentless research efforts are being undertaken to bring the technology to complete maturity through laboratory, physical models, and in-situ tests. The application of distributed optical fibre sensors to geo-hydrological monitoring is here reviewed and discussed, along with basic principles and main acquisition techniques. Among the many existing geo-hydrological processes, the emphasis is placed on those related to soil levees, slopes/landslide, and ground subsidence that constitute a significant percentage of current geohazards.
机译:采用瑞利散射,拉曼散射或布里渊散射的分布式光纤感测是唯一能够精确估计沿光纤具有空间连续性的物理场的物理接触式传感器技术。多年来,标准光纤传感器的这一独特功能和其他功能(例如,最小的侵入性和轻巧的远程供电/询问功能)使该技术成为进行地理水文监测的有希望的候选者。通过实验室,物理模型和原位测试,正在进行不懈的研究努力,以使该技术完全成熟。本文回顾并讨论了分布式光纤传感器在地质水文监测中的应用,以及基本原理和主要采集技术。在许多现有的地球水文过程中,重点放在与土壤堤坝,斜坡/滑坡和地面沉降有关的那些过程中,这些过程构成了当前地质灾害的很大一部分。

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