Evaluation of three different optical fibre temperature sensor types for application in gamma radiation environments

F. Berghmans, F. Vos, M. Decréton
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引用次数: 23

Abstract

We compare the gamma radiation response of three different types of commercially available optical fibre temperature sensors. These are semiconductor absorption, Fabry-Perot cavity and fluorescence sensors. In order to evaluate their possible application in nuclear environments, we first highlight the principles of operation and the constructions. We then report on the gamma irradiation results and explain the observed degradation phenomena. For all three sensor types, the basic transduction mechanism does not seem to be affected by gamma radiation. The semiconductor absorption sensor shows a good radiation resistance (up to 160 kGy) in its present form, whereas the other sensor constructions need to be adapted. For the semiconductor absorption sensor, additional neutron irradiation experiments are performed, which are found to affect the principle of operation of this sensor.
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三种不同类型的光纤温度传感器在伽马辐射环境中的应用评估
我们比较了三种不同类型的商用光纤温度传感器的伽马辐射响应。这些是半导体吸收,法布里-珀罗腔和荧光传感器。为了评估它们在核环境中的应用可能性,我们首先强调了它们的工作原理和结构。然后,我们报告了伽马辐照结果,并解释了观察到的降解现象。对于所有三种传感器类型,基本的转导机制似乎不受伽马辐射的影响。半导体吸收传感器在其现有形式下显示出良好的抗辐射性能(高达160 kGy),而其他传感器结构需要进行调整。对于半导体吸收传感器,进行了额外的中子辐照实验,发现中子辐照会影响传感器的工作原理。
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