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High temperature measurements in irradiated environment using Raman fiber-optics distributed temperature sensing

机译:使用拉曼光纤分布式温度传感照射环境的高温测量

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Optical fiber temperature sensors using Raman effect are a promising technology for temperature mapping of nuclear power plant pipes. These pipes are exposed to high temperature (350 °C) and gamma radiations, which is a harsh environment for standard telecom fibers. Therefore metal coated fibers are to be used to perform measurement over 300 °C. Temperature variations can affect the attenuation of the metallic coated fiber before irradiation. The latter induces an extra attenuation, due to light absorption along the fiber by radiation-induced defects. The recombination of these defects can be strongly accelerated by the high temperature value. As backscattered Raman signal is weak it is important to test optical fibers under irradiation to observe how it gets attenuated. Different experiments are described in this conference paper: two in situ irradiation campaigns with different dose rates at, both ambient and high temperature. We observe that the tested off-the-shelf metallic coated fibers have a high attenuation under irradiation. We also noticed the fact that thermal annealing plays a massive role in the +300 °C temperature range.
机译:使用拉曼效应的光纤温度传感器是核电站管道温度映射的有希望的技术。这些管道暴露于高温(350°C)和伽马辐射,这是标准电信纤维的恶劣环境。因此,金属涂覆的纤维用于在300℃下进行测量。温度变化会影响金属涂层纤维在照射前的衰减。由于沿纤维通过辐射诱导的缺陷,后者诱导额外的衰减。这些缺陷的重组可以通过高温值强烈地加速。由于反向散射的拉曼信号较弱,重要的是要在照射下测试光纤以观察其变化的衰减。本次会议论文中描述了不同的实验:两者在环境和高温下具有不同剂量率的原位辐照活动。我们观察到测试的离上金属涂覆纤维在照射下具有高衰减。我们还注意到,热退火在+ 300℃的温度范围内发挥着大规模作用。

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