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法国的先进分布式光纤传感器已获认可,可用于监测法国高放和中放长寿命放射性废物地下处置库。

France's State of the Art Distributed Optical Fibre Sensors Qualified for the Monitoring of the French Underground Repository for High Level and Intermediate Level Long Lived Radioactive Wastes.

作者信息

Delepine-Lesoille Sylvie, Girard Sylvain, Landolt Marcel, Bertrand Johan, Planes Isabelle, Boukenter Aziz, Marin Emmanuel, Humbert Georges, Leparmentier Stéphanie, Auguste Jean-Louis, Ouerdane Youcef

机构信息

National Radioactive Waste Management Agency (Andra), F-92298 Chatenay-Malabry, France.

Laboratoire Hubert Curien CNRS UMR 5516, University of Lyon, F-42000 Saint-Etienne, France.

出版信息

Sensors (Basel). 2017 Jun 13;17(6):1377. doi: 10.3390/s17061377.

Abstract

This paper presents the state of the art distributed sensing systems, based on optical fibres, developed and qualified for the French Cigéo project, the underground repository for high level and intermediate level long-lived radioactive wastes. Four main parameters, namely strain, temperature, radiation and hydrogen concentration are currently investigated by optical fibre sensors, as well as the tolerances of selected technologies to the unique constraints of the Cigéo's severe environment. Using fluorine-doped silica optical fibre surrounded by a carbon layer and polyimide coating, it is possible to exploit its Raman, Brillouin and Rayleigh scattering signatures to achieve the distributed sensing of the temperature and the strain inside the repository cells of radioactive wastes. Regarding the dose measurement, promising solutions are proposed based on Radiation Induced Attenuation (RIA) responses of sensitive fibres such as the P-doped ones. While for hydrogen measurements, the potential of specialty optical fibres with Pd particles embedded in their silica matrix is currently studied for this gas monitoring through its impact on the fibre Brillouin signature evolution.

摘要

本文介绍了基于光纤的分布式传感系统的技术现状,该系统是为法国Cigéo项目(高水平和中水平长寿命放射性废物地下储存库)开发并通过鉴定的。目前,光纤传感器正在研究四个主要参数,即应变、温度、辐射和氢浓度,以及所选技术对Cigéo恶劣环境独特限制的耐受性。使用被碳层和聚酰亚胺涂层包围的掺氟石英光纤,可以利用其拉曼、布里渊和瑞利散射信号来实现放射性废物储存单元内部温度和应变的分布式传感。关于剂量测量,基于诸如掺磷光纤等敏感光纤的辐射诱导衰减(RIA)响应,提出了有前景的解决方案。而对于氢测量,目前正在研究在其二氧化硅基质中嵌入钯颗粒的特种光纤通过其对光纤布里渊信号演变的影响来进行这种气体监测的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/661a/5492040/e75795135ca9/sensors-17-01377-g012.jpg

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