基于电磁检测机理的井下环空流量测量方法研究
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TH814

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国家自然科学基金(51974273)、四川省国际科技合作与交流研究项目(18GJHZ0195)资助


Research on the measurement method of downhole annular flow based on the electromagnetic detection mechanism
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    摘要:

    复杂油气藏的开采面临严重的溢流、漏失等钻井事故风险,实时监测近钻头环空流量信息可以在事故早期发现工况异常,有效降低井控风险。对钻井过程中的环空流量电磁测量方法进行了研究,首先对基于法拉第电磁感应定律的井下环空流量电磁测量方法的测量原理进行了研究;其次分析了井下环空流量电磁测量系统设计思路,详细推导了其虚电流密度分布及其机械结构力学模型;然后,通过有限元仿真软件进行励磁线圈结构优化及主体力学分析得到测量系统的最优结构;最后,搭建井下环空流量电磁测量地面原理样机并进行实验测试验证。实验结果表明,电磁测量原理样机测量精度在1%左右且安全系数大于9,可以满足井下环空流量测量的需要。本文完成的井下环空电磁测量方法,对于后续井下环空流量测量方法的实现以达到早期井控的目的,继而降低钻井风险具有指导意义。

    Abstract:

    The recovery of the complex oil and gas reservoir faces serious overflow, leakage and other drilling accidents. The real time information near bit annular flow information can help to identify the abnormality early, which can reduce the risk of well control effectively. In this paper, a method of electromagnetic measurement system for annular flow in the drilling process is proposed. Firstly, the theory of downhole annular flow electromagnetic measurement system based on Faraday′s law is studied. Then, the principle of downhole annular flow electromagnetic measurement system is analyzed. The virtual current density distribution and the mechanical model are deducted in detail. The optimum structure of the measurement system is obtained by the finite simulation software combined with excitation coil structure optimization and main structure mechanics analysis. Finally, the prototype of downhole annular flow electromagnetic measurement is constructed and the evaluation experiment is implemented. Experimental results show that the electromagnetic measurement prototype can reach the accuracy of around 1. Its safety factor is over 9, which satisfies the downhole annular flow measurement. The downhole annular electromagnetic measurement theory has great significance to the following research on downhole annular flow measurement and realization of early well control and secure drilling.

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葛亮,黄凯强,田贵云,胡泽,韦国晖.基于电磁检测机理的井下环空流量测量方法研究[J].仪器仪表学报,2019,40(12):161-174

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  • 在线发布日期: 2022-04-19
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