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首页> 外文期刊>Sensors and Actuators, A. Physical >Experimental and simulation study on thermal gas flowmeter based on fiber Bragg grating coated with silver film
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Experimental and simulation study on thermal gas flowmeter based on fiber Bragg grating coated with silver film

机译:基于镀银膜的光纤布拉格光栅的热气体流量计的实验与仿真研究

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摘要

An optical fiber thermal gas flowmeter based on a core-offset fiber Bragg grating (FBG) has been proposed and demonstrated for low-rate gas flow measurement. Light from a pump laser within the fiber was coupled by the core-offset structure into the downstream fiber cladding and was absorbed by the silver layer coated on the fiber surface over the FBG. The FBG was heated by this absorption and the produced heat would be partially taken away as air flowed by, which caused a Bragg wavelength shift with a dependence on the air flow rate. A stainless steel capillary tube with a convection slot was designed for encapsulation of the FBG sensor to increase its mechanical strength and usage durability. We modeled the heated fiber flowmeter to acquire the temperature fields at various flow velocities by using the finite element modeling (FEM) method, and calibrated the flowmeter with a Standard Bell Prover. Experimental results revealed a monotonous power function relationship between the gas flow and the Bragg wavelength with a fitting error less than 3% and a gas flow detection limit of similar to 0.178 m(3)/h in a range up to 32 m(3)/h. Moreover, the proposed flowmeter is of high security, easy-integration and low cost. (C) 2015 Elsevier B.V. All rights reserved.
机译:提出了一种基于纤芯偏移光纤布拉格光栅(FBG)的光纤热气体流量计,并已进行了演示,用于低速气体流量测量。来自光纤内的泵浦激光器的光通过纤芯偏移结构耦合到下游光纤包层中,并被涂覆在FBG上方光纤表面上的银层吸收。 FBG通过这种吸收被加热,产生的热量将随着空气的流过而被部分带走,这会导致布拉格波长的变化,这取决于空气的流速。具有对流槽的不锈钢毛细管被设计用于FBG传感器的封装,以增加其机械强度和使用寿命。我们使用有限元建模(FEM)方法对加热纤维流量计进行建模,以获取各种流速下的温度场,并使用Standard Bell Prover校准流量计。实验结果表明,气体流量与布拉格波长之间具有单调幂函数关系,拟合误差小于3%,并且在最大32 m(3)的范围内,气体流量检测极限类似于0.178 m(3)/ h。 /H。而且,所提出的流量计安全性高,易于集成且成本低廉。 (C)2015 Elsevier B.V.保留所有权利。

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