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A New Type of Optical Fiber Sensor for Multi-Phase Detection in Petroleum Production |
CHEN Ji-liang1,KONG De-ming2,HAO Hu1,KONG De-han3,LIU Guo-quan4,KONG Ling-fu1 |
1. Institute of Information Science and Engineering, Yanshan University, Qinhuangdao, Hebei 066004, China;
2. Institute of Electrical Engineering, Yanshan University, Qinhuangdao, Hebei 066004, China
3. Department of Information Engineering, Hebei University of Environmental Engineering, Qinhuangdao, Hebei 066000, China
4. Production Logging Center, China Petroleum lagging Co. Ld., Xi′an, Shaanxi 710077, China |
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Abstract In order to solve the problem of multi-phase detection in oil production, a new type of dual-receiving fiber sensor (NDR-FOP) for multi-phase detection was developed. A model of dual-receiver ring coupling optical path (DR-RCOP) was constructed using the ZEMAX ray tracing method. The mathematical description and simulation analysis of the light transmission trajectory through the NDR-FOP cone-shaped sensor were carried out. The performance of NDR-FOP multi-phase detection in oil-gas-water multi-phase flow mixed-phase media was also evaluated based on the above research results and it was test on an experimental platform. Simulation and experiment results show that the difference eigenvalues between oil, gas and water media form a clear distance, which proves that the NDR-FOP multi-phase detection is feasible and effective.
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Received: 16 November 2020
Published: 20 August 2022
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[1]Fu X F, Lan X, Meng L D, et al. Characteristics of fault zones and their control on remaining oil distribution at the fault edge: a case study from the northern Xingshugang Anticline in the Daqing Oilfield, China[J]. Petroleum Science, 2016, 13(3), 418-433.
[2]方立德, 王少冲, 王配配, 等. 基于近红外面源传感器的气液两相流相含率测量[J]. 计量学报, 2019, 40(6): 1043-1049.
Fang L D, Wang S C, Wang P P, et al. Phase Volume Fraction Measurement of Gas-liquid Two-phase Flow Based on Near-infrared Surface Source[J]. Acta Metrologica Sinica, 2019, 40(6): 1043-1049.
[3]Tatematsu T, Togashi K, Nanbu T, et al. Probe card and probe contact method: US 20030098702[P]. 2003-05-29.
[4]郝志远. 油气水三相流持气率测量光纤探针传感器结构优化设计[D]. 秦皇岛: 燕山大学, 2017.
[5]刘磊, 周芳德. 用探针法在线测量管道气液两相流平均截面含气率[J]. 计量技术, 1996(4): 17-18.
[6]刘磊, 周芳德. 气液两相流流量的互相关测量[J]. 计量学报, 1994, 15(2): 126-131.
Liu L, Zhou F D, The Measurement of Gas-Liquid Two-Phase Flowrate by Using Cross-Correlation Analysis[J]. Acta Metrologica Sinica, 1994, 15(2): 126-131.
[7]张勇, 李英伟, 刘兴斌, 等. 持气率测量光纤探针敏感头仿真及形状优化[J]. 石油管材与仪器, 2015, 1(2): 82-84.
Zhang Y, Li Y W, Liu X B, et al. Optimized Measurement of Gas Holdup of the Optical Fiber Probe Sensitive Head Structure[J]. Petroleum Tubular Goods & Instruments, 2015(2): 82-84.
[8]Li Y W, Zhao W, Chen J L, et al. Modeling and optimal design of fiber-optic probe for medium detection based on computer simulation[J]. Cluster Computing, 2017, 22(5): 11207-11226.
[9]Cartellier A. Simultaneous void fraction measurement, bubble velocity, and size estimate using a single optical probe in gas-liquid two-phase flows[J]. Review of entific Instruments, 1992, 63(11): 5442-5453.
[10]Barrau E, Rivière N, Poupot C, et al. Single and double optical probes in air-water two-phase flows: real time signal processing and sensor performance[J]. International Journal of Multiphase Flow, 1999, 25(2): 229-256.
[11]王炎. 油气水三相流蓝宝石光纤探针传感器持气率测量技术研究[D]. 秦皇岛: 燕山大学, 2013.
[12]张吉焱, 刘文丽, 孙劼. 综合验光仪中镜片偏心与倾斜对验光的影响分析[J]. 计量学报, 2010, 31(1): 17-21.
Zhang J Y, Liu W L, Sun J. Effect on Optometry for Decentration and Tilt of Lenses in Phoropter[J]. Acta Metrologica Sinica, 2010, 31(1): 17-21.
[13]石市委, 孙兆奇, 吕建国. 光学折射反射定律的两种不同的数学实现[J]. 合肥师范学院学报, 2010, 28(6): 17-19.
Shi S W, Sun Z Q, Lü J Q. The Expressions of Refraction Law and Reflection Law in Optics[J]. Journal of Hefei Normal University, 2010, 28(6): 17-19.
[14]欧家鸣, 王瑞丽, 尚鹤岑, 等. 反射定律的三种表达形式[J]. 云南师范大学学报, 2000, 20(1): 57-61.
Ou J M, Wang R L, Shang H C, et al. Three Forms of Expression about Ref lection Law[J]. Journal of Yunnan Normal University, 2000, 20(1): 57-61.
[15]Li Y F, Lit J W Y. Transmission properties of a multimode optical-fiber taper[J]. Journal of the Optical Society of America A, 1985, 2(3): 462-468.
[16]王海林, 张登印. 基于zemax半导体激光器与单模光纤耦合系统设计[J]. 光子学报, 2011, 40(S1): 81-84.
Wang H L, Zhang D Y. Design of CoupIing System Between Fibers and Laser Diodes Based on Zemax[J]. Acta Photonica Sinica, 2011, 40(S1): 81-84.
[17]Xie B B, Kong D M, Kong L F, et al. Analysis of Vertical Upward Oil-gas-water Three-phase Flow based on Multi-scale Time Irreversibility[J]. Flow Measurement and Instrumentation, 2018, 62: 9-18. |
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