利用光纤光栅传感器进行低温液位检测

Sharath Umesh, L. S. Rajan, VV Lakshmi Pathi, Pramod Bandiwad, S. Elumalai, K. Sriram
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引用次数: 2

摘要

低温液位检测在运载火箭燃料(液氢/液氧)加注至低温阶段过程中起着重要作用。利用折射法调制强度或热交换效率法调制波长的光纤传感器已被用于低温液位检测。本研究报告了一种新的波长调制方法,采用多路光纤布拉格光栅(FBG)传感器来评估储罐中的低温液位。两个fbg连接在相隔20厘米的电阻加热棒上,作为传感元件,将浸入低温流体中。传感元件的温度周期性升高,并获得两个光纤光栅传感器的相应热响应。低温流体的液态导热能力高于气态导热能力。通过评估周围环境的传热特性得到光纤光栅传感器的热响应,从而确定其在液态或气态低温流体中的存在。通过实验研究发现,fbg的热响应能够主动区分低温流体的液态和气态。此外,由于具有多路复用能力,可以在单根光纤中制造许多fbg,这些光纤可以作为离散的感测点,以便评估低温液位。
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Cryogenic liquid level detection using fiber Bragg grating sensor
Cryogenic liquid level detection plays a significant role during the filling of fuel (liquid hydrogen/liquid oxygen) to cryogenic stage in launch vehicles. Optical fiber sensors have been employed for cryogenic liquid level detection utilizing either intensity modulation by refractometry method or wavelength modulation by heat exchange efficiency method. The present study reports a novel wavelength modulation methodology employing multiplexed Fiber Bragg Grating (FBG) Sensors to assess the cryogenic liquid level in a storage tank. Two FBGs bonded over a resistance heater rod 20cm apart act as the sensing element, which will be immersed in the cryogenic fluid. The temperature of the sensing element is periodically increased and corresponding thermal responses of both the FBG sensors are acquired. Heat conductance capacity of cryogenic fluid is higher in liquid state than in gaseous state. The thermal responses of the FBG sensor obtained by assessing the heat transfer characteristics of the surrounding environment, will ascertain its existence in liquid or gaseous cryogenic fluid. By experimental investigation, it is observed that the thermal responses of the FBGs can actively discern between the liquid and gaseous states of cryogenic fluids. Further, with multiplexing capability, numerous FBGs can be fabricated in a single strand of fiber which can be discreet sensing points in order to assess the cryogenic liquid level.
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