...
首页> 外文期刊>Nuclear Science, IEEE Transactions on >Development of a Temperature Distributed Monitoring System Based On Raman Scattering in Harsh Environment
【24h】

Development of a Temperature Distributed Monitoring System Based On Raman Scattering in Harsh Environment

机译:恶劣环境下基于拉曼散射的温度分布监测系统的开发

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Raman Distributed Temperature Sensors (RDTSs) offer exceptional advantages to monitor the envisioned French deep geological repository for nuclear wastes, called Cigéo. Both -ray and hydrogen release from nuclear wastes can strongly affect the temperature measurements made with RDTS. We present experimental studies on how the performances of RDTS evolve in harsh environments like those associated with -rays or combined radiations and release. The response of two standard and one radiation tolerant multimode fibers (MMFs) are investigated. In all fibers the differential induced attenuation between Stokes and anti-Stokes signal, causes a temperature errors, up to with standard multimode fibers (100 m) irradiated at 10 MGy dose. This degradation mechanism that is more detrimental than the radiation induced attenuation (RIA) limiting only the sensing range. The attenuation in the [800-1600 nm] spectral range at room temperature is explored for the three fibers -irradiated and/or hydrogen loaded to understand the origin of the differential RIA. We show that by adapting the characteristics of the used fiber for the sensing, we could limit its degradation but that additional hardening by system procedure is necessary to correct the T error in view of the integration of our RDTS technology in Cigéo. The current version of our correction technique allows today to limit the temperature error to for 10 MGy irradiated samples.
机译:拉曼分布式温度传感器(RDTS)具有出色的优势,可以监视法国设想的核废料深层地质处置库(称为Cigéo)。从核废料中释放出的射线和氢都会严重影响RDTS进行的温度测量。我们目前就RDTS的性能如何在恶劣的环境(如与X射线或辐射与释放相结合的环境)中如何演变进行实验研究。研究了两种标准和一种耐辐射多模光纤(MMF)的响应。在所有光纤中,斯托克斯信号和反斯托克斯信号之间的差分感应衰减会导致温度误差,最高可达10MGy剂量的标准多模光纤(100m)。这种退化机制比仅限制感应范围的辐射感应衰减(RIA)更具危害性。探索了在室温下[800-1600 nm]光谱范围内的衰减,对三根光纤进行了辐照和/或加载了氢,以了解差分RIA的起源。我们表明,通过调整所用光纤的特性进行传感,可以限制其退化,但是鉴于我们的RDTS技术已集成到Cigéo中,因此必须通过系统程序进行额外的硬化处理以纠正T误差。目前,我们的校正技术的当前版本允许将温度误差限制为10 MGy辐照样品。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号