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Embedded infrared fiber-optic sensor for thermometry in a high temperature/pressure environment

机译:嵌入式红外光纤传感器,用于高温/高压环境中的测温

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In this study, we developed an embedded infrared fiber-optic temperature sensor for thermometry in high temperature/pressure and water-chemistry environments by using two identical silver-halide optical fibers. The performance of the fabricated temperature sensor was assessed in an autoclave filled with an aqueous coolant solution containing boric acid and lithium hydroxide. We carried out real-time monitoring of the infrared radiation emitted from the signal and reference probes for various temperatures over a temperature range from 95 to 225 °C. In order to decide the temperature of the synthetic coolant solution, we measured the difference between the infrared radiation emitted from the two temperature-sensing probes. Thermometry with the proposed sensor is immune to any changes in the physical conditions and the emissivity of the heat source. From the experimental results, the embedded infrared fiber-optic temperature sensor can withstand, and normally operate in a high temperature/pressure test loop system corresponding to the coolant system used for nuclear power plant simulation. We expect that the proposed sensor can be developed to accurately monitor temperatures in harsh environments.
机译:在这项研究中,我们通过使用两条相同的卤化银光纤,开发了一种嵌入式红外光纤温度传感器,用于高温/高压和水化学环境中的测温。在装满含有硼酸和氢氧化锂的冷却剂水溶液的高压釜中评估了制成的温度传感器的性能。我们对从信号探头和参考探头发出的红外辐射进行了实时监控,以检测温度范围为95至225°C的各种温度。为了确定合成冷却液的温度,我们测量了两个温度感应探头发出的红外辐射之间的差异。使用建议的传感器进行测温不受物理条件和热源发射率的任何变化的影响。从实验结果来看,嵌入式红外光纤温度传感器可以承受并正常运行在高温/高压测试回路系统中,该系统对应于用于核电站模拟的冷却剂系统。我们希望所提出的传感器可以开发为在恶劣环境下准确监测温度。

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