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基于单壁碳纳米管包覆倾斜光纤布拉格光栅的光纤风速计。

Fiber-optic anemometer based on single-walled carbon nanotube coated tilted fiber Bragg grating.

作者信息

Zhang Yang, Wang Fang, Liu Zigeng, Duan Zhihui, Cui Wenli, Han Jie, Gu Yiying, Wu Zhenlin, Jing Zhenguo, Sun Changsen, Peng Wei

出版信息

Opt Express. 2017 Oct 2;25(20):24521-24530. doi: 10.1364/OE.25.024521.

Abstract

In this work, a novel and simple optical fiber hot-wire anemometer based on single-walled carbon nanotubes (SWCNTs) coated tilted fiber Bragg grating (TFBG) is proposed and demonstrated. For the hot-wire wind speed sensor design, TFBG is an ideal in-fiber sensing structure due to its unique features. It is utilized as both light coupling and temperature sensing element without using any geometry-modified or uncommon fiber, which simplifies the sensor structure. To further enhance the thermal conversion capability, SWCNTs are coated on the surface of the TFBG instead of traditional metallic materials, which have excellent thermal characteristics. When a laser light is pumped into the sensor, the pump light propagating in the core will be easily coupled into cladding of the fiber via the TFBG and strongly absorbed by the SWCNTs thin film. This absorption acts like a hot-wire raising the local temperature of the fiber, which is accurately detected by the TFBG resonance shift. In the experiments, the sensor's performances were investigated and controlled by adjusting the inherent angle of the TFBG, the thickness of SWCNTs film, and the input power of the pump laser. It was demonstrated that the developed anemometer exhibited significant light absorption efficiency up to 93%, and the maximum temperature of the local area on the fiber was heated up to 146.1°C under the relatively low pump power of 97.76 mW. The sensitivity of -0.3667 nm/(m/s) at wind speed of 1.0 m/s was measured with the selected 12° TFBG and 1.6 μm film.

摘要

在这项工作中,提出并演示了一种基于单壁碳纳米管(SWCNT)涂覆倾斜光纤布拉格光栅(TFBG)的新型简单光纤热线风速仪。对于热线风速传感器设计,TFBG由于其独特特性是一种理想的光纤传感结构。它被用作光耦合和温度传感元件,无需使用任何几何形状修改的或不常见的光纤,这简化了传感器结构。为了进一步提高热转换能力,SWCNT被涂覆在TFBG表面而非传统金属材料,SWCNT具有优异的热特性。当激光泵浦到传感器中时,在纤芯中传播的泵浦光将很容易通过TFBG耦合到光纤包层中,并被SWCNT薄膜强烈吸收。这种吸收作用就像一根热线提高了光纤的局部温度,该温度通过TFBG共振位移被精确检测到。在实验中,通过调整TFBG的固有角度、SWCNT薄膜的厚度和泵浦激光的输入功率来研究和控制传感器的性能。结果表明,所开发的风速仪具有高达93%的显著光吸收效率,在97.76 mW的相对低泵浦功率下,光纤局部区域的最高温度加热到146.1°C。使用选定的12°TFBG和1.6μm薄膜,在风速为1.0 m/s时测量到的灵敏度为-0.3667 nm/(m/s)。

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