基于弱反射光纤光栅的油气井分布式温度传感技术

X. Zhong, Min Yang, Lei Shi, L. Chai, Sai Ye
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引用次数: 1

摘要

针对石油工业井下分布式测温问题,采用飞秒激光直写弱反射光纤布拉格光栅(FBG)构建了井下分布式测温系统。分析了弱反射光纤光栅的原理和技术优势,形成了大规模的分布式温度传感阵列;提出了双光路噪声抑制方法,有效消除了光功率波动对测量结果的影响,提高了系统测温的精度和稳定性;采用自主研发的强耦合多芯光纤构建斜坡滤波器,解决了弱反射FBG阵列输出快速解调的关键问题。采用自主研制的强耦合多芯光纤解决了弱光纤光栅阵列输出的快速解调技术问题。最后,对所开发的温度测量系统进行了实验标定和模拟井测试,测试结果表明,该系统的精度达到0.5°C,空间分辨率为50 cm。井下实验测试表明,该系统具有良好的抗高压性能,可在高温高压下长时间稳定运行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Distributed temperature sensing technology for oil and gas Wells based on weak reflection Fiber Bragg Grating
For the down-hole distributed temperature measurement problem in the oil industry, the paper uses femtosecond laser direct-written weak reflection fiber Bragg grating (FBG) to construct a down-hole distributed temperature measurement system. The paper analyzes the principle and technical advantages of weak reflection FBG to form a large-scale distributed temperature sensing array; proposes a dual optical path noise suppression method, which effectively eliminates the influence of optical power fluctuations on the measurement results and improves the accuracy and stability of the system temperature measurement; uses self-developed strongly coupled multi-core optical fiber to build a ramp filter, which solves the key problem of fast demodulation of the output of the weak reflection FBG array. The technical problems of fast demodulation of the output of weak FBG arrays were solved by using self-developed strong-coupled multi-core optical fiber. Finally, the developed temperature measurement system was experimentally calibrated and tested in a simulated well, and the test results showed that the accuracy of the system reached 0.5°C with a spatial resolution of 50 cm. The down-hole experimental tests showed that the system has good resistance to high pressure and can operate stably for a long time under high temperature and pressure.
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