Chen Rongzhang, Yan Aidong, Wang Qingqing, Chen Kevin P
Opt Lett. 2014 Jul 1;39(13):3966-9. doi: 10.1364/OL.39.003966.
This Letter presents an all-optical high-temperature flow sensor based on hot-wire anemometry. High-attenuation fibers (HAFs) were used as the heating elements. High-temperature-stable regenerated fiber Bragg gratings were inscribed in HAFs and in standard telecom fibers as temperature sensors. Using in-fiber light as both the heating power source and the interrogation light source, regenerative fiber Bragg grating sensors were used to gauge the heat transfer from an optically powered heating element induced by the gas flow. Reliable gas flow measurements were demonstrated between 0.066 m/s and 0.66 m/s from the room temperature to 800°C. This Letter presents a compact, low-cost, and multiflexible approach to measure gas flow for high-temperature harsh environments.
本文介绍了一种基于热线风速仪的全光学高温流量传感器。高衰减光纤(HAF)被用作加热元件。在HAF和标准通信光纤中写入高温稳定的再生光纤布拉格光栅作为温度传感器。利用光纤内光作为加热电源和询问光源,再生光纤布拉格光栅传感器用于测量气流引起的光驱动加热元件的热传递。在室温至800°C的范围内,可靠地演示了0.066 m/s至0.66 m/s之间的气体流量测量。本文提出了一种紧凑、低成本且多功能灵活的方法,用于在高温恶劣环境下测量气体流量。