边孔相移光纤光栅测量压力温度的仿真及优化
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(1.武汉理工大学 光纤传感技术国家工程实验室,湖北 武汉 430070; 2.中国石油化工股份有限公司江汉油田分公司,湖北 潜江 433124)

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梁 磊(1963-),男,博士,博士生导师。主要 从事光纤光栅传感方面研究.

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三亚崖州湾科技城管理局2019年、2020年度科技计划(SKJC-KJ-2019KY02,SKJC-2020-01 -016)和中石化攻关项目(P21052)资助项目


Simulation and optimization of pressure and temperature measurement with side ho le phase shift fiber grating
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(1.National Engineering Laboratory of Fiber Sensing Technology,Wuhan Universi ty of Technology,Wuhan, Hubei 430070, China;2.SINOPEC Jianghan Oilfield Company,Qianjiang,Hubei 4331 24, China)

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    摘要:

    油井内压力及温度的测量是智能完井系统的重要 组成部分。为了能在井下环境实现单点、压力温 度双参量测量,且最高压力可达30 MPa,温度可达120 ℃,本文提出一种在圆心边孔光纤(side hole fiber,SHF)上刻写π相移光 栅的压力温度传感器。首先对边孔π相移光纤光栅同时测量压力及温度进行了理论推导,证 明同时检测 压力温度的理论可行性。其次,在理论的基础上,对SHF进行了仿真优化,并引入断裂 极限限定条 件,得到SHF的最优尺寸为孔中心距27 μm,孔半径21 .5 μm。结果表明:SHF能实现单点双参量的 测量,π相移光栅的引入提高了测量分辨率;SHF的孔半径越大孔越靠近纤芯,压力灵 敏度越高,但 考虑光纤断裂情况则并不是半径越大越好。该研究对特定压力测量范围下的边孔光栅压力温 度传感器设计有指导意义。

    Abstract:

    The measurement of pressure and temperature in oil well is an importan t part of intelligent completion system.In order to realize single point and double parameter measure ment of pressure and temperature in downhole environment,and the maximum pressure can reach 30 MP a and the temperature can reach 120 ℃,a pressure and temperature sensor with π phase shi ft grating in center-shaped side hole fiber (SHF) is proposed in this paper.Firstly,the theoretical derivation of simultaneous measurement o f pressure and temperature with side hole π phase shift fiber grating is carried out to prove the theoretical feasibility of simultaneous measurement of pressure and temperature.Secondly,based on the theory,the SHF is simulated and optimized,and the fracture limit is introduced.T he optimal size of the SHF is obtained as 27 μm from the center of the hole and 21.5 μm from the radius of the hole.The results show that the SHF can realize the measurement of single point and double parameters,and the introduction of π phase shift grating improves the measurement resolution. The larger the hole radius of the SHF,the closer the hole to the core is,the higher the pressure sensitivity,but considering the fiber fracture,the larger the radius is not the better.This research has guiding significance for the design of edge hole grating pressure a nd temperature sensor in a specific pressure measurement range.

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梁磊,任启鹏,王辉,戴澍,陈重.边孔相移光纤光栅测量压力温度的仿真及优化[J].光电子激光,2022,33(8):785~791

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  • 收稿日期:2021-11-16
  • 最后修改日期:2021-12-18
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  • 在线发布日期: 2022-09-08
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