石油生产光纤-电导组合探针阵列多分相测井仪研究
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TH89

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国家自然科学基金(62173289)、河北省自然科学基金青年科学基金(F2019203526)、河北省高等学校科学技术研究项目(ZD2020118)、秦皇岛市重点研发计划科技支撑项目(202005A004)资助


Research on a fiber-conductance combined probe array multi-phase logging tool in petroleum productions
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    摘要:

    为解决石油生产多分相测量问题,基于课题组研制的创新型光纤-电导组合探针设计研制一种用于石油生产多参数测 量的高精度、高灵敏度探测仪器。 采用 ZEMAX 光线追迹方法和 FEM 数值分析方法对光纤-电导组合探针阵列多分相测井仪电 场分布、响应特性进行了理论分析,且验证了其在流量为 5、10、20、30 m 3 / d,持气率为 10% 、20% 、30% 、40% ,持水率为 90% 、 80% 、70% 、60% 等工况下良好的测量效果。 为进一步证明其优良性能,以液相流量 30 m 3 / d,液相持水率 25% 、45% 、65% 及 85% ,气流量 6、12、24 m 3 / d 等多相流工况为例进行动态实验分析,其持气率测量误差在 5% 以内,持水率误差在 10% 以内。 实 际动态实验与仿真模拟结果保持相同。 充分表明光纤-电导组合探针阵列多分相测井仪的良好的性能。

    Abstract:

    To solve the problem of multi-phase measurement in oil production, a high-precision and high-sensitivity detection instrument for multi-parameter measurement of petroleum production is designed and developed, which is based on the innovative fiber-conductance combined probe developed by the research group. The ZEMAX ray tracing method and the FEM numerical analysis method are both used to theoretically analyze the electric field distribution and response characteristics of the fiber-conductance combined probe array multiphase logging tool. It has been verified that a good measurement effect can be realized under working conditions such as flow rate of 5, 10, 20, 30 m 3 / d, gas holdup of 10% , 20% , 30% , 40% , and water holdup of 90% , 80% , 70% , 60% , etc. To further prove its excellent performance, the multiphase flow conditions are considered, such as liquid flow rate 30 m 3 / d, the liquid phase water holdup 25% , 45% , 65% and 85% , and the gas flow rate 6, 12, 24 m 3 / d, etc. The dynamic experimental analysis is carried out. The measurement error of FCCPA_MLT gas holdup is within 5% , and the water holdup error is within 10% . The actual dynamic experiment and the simulation results remain the same. Results show that the developed fiber-conductance combined probe array multi-phase logging tool has good performance.

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陈基亮,孔德明,郝 虎,刘国权,仲美玉.石油生产光纤-电导组合探针阵列多分相测井仪研究[J].仪器仪表学报,2022,43(1):239-252

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  • 在线发布日期: 2023-02-06
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