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Design of High Sensitive Pressure and Temperature Sensor Using Photonic Crystal Fiber for Downhole Application

机译:光子晶体光纤在井下应用中的高灵敏度压力和温度传感器设计

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摘要

Permanent monitoring of two important parameters, pressure and temperature, plays an important role in reservoir engineering to increase the production rates of oil wells. The numerous advantages of photonic crystal fiber (PCF) sensors make them a proper choice as a sensor in the hostile environment of well. In this paper, we propose short length, high sensitive pressure, and temperature sensor based on hollow-core PCF. The validation of the proposed design is carried out by employing the 3-D finite-difference time domain (FDTD) method. Our sensor mechanism is based on the transmission peak wavelength shift caused by the temperature/pressure changes, with special emphasis on geometric parameters of the structure of PCF. We show that the proposed design provides a sensitivity about 480 nm/RIU with a linear dependence of the resonance wavelength on the refractive index of the ambient and PCF holes at $lambda = 1.55 muhbox{m}$.
机译:永久监测两个重要参数(压力和温度)在油藏工程中发挥重要作用,以提高油井的生产率。光子晶体光纤(PCF)传感器的众多优势使其成为井中恶劣环境中的传感器的正确选择。在本文中,我们提出了基于空心PCF的短长度,高灵敏压力和温度传感器。通过采用3-D有限差分时域(FDTD)方法来进行所提出设计的验证。我们的传感器机制基于温度/压力变化引起的传输峰值波长偏移,特别强调PCF结构的几何参数。我们表明,所提出的设计提供了大约480 nm / RIU的灵敏度,谐振波长与周围和PCF孔的折射率在$ lambda = 1.55 muhbox {m} $时线性相关。

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