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Design and Optimization of Annular Flow Electromagnetic Measurement System for Drilling Engineering

机译:钻井工程环流电磁测量系统的设计与优化

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Using the downhole annular flow measurement system to get real-time information of downhole annular flow is the core and foundation of downhole microflux control drilling technology. The research work of electromagnetic flowmeter in recent years creates a challenge to the design of downhole annular flow measurement. This paper proposes a design and optimization of annular flow electromagnetic measurement system for drilling engineering based on the finite element method. Firstly, the annular flow measuring and optimization principle are described. Secondly, a simulation model of an annular flow electromagnetic measurement system with two pairs of coil is built based on the fundamental equation of electromagnetic flowmeter by COMSOL. Thirdly, simulations of the structure of excitation system of the measurement system are carried out, and simulations of the size of the electrode’s radius are also carried out based on the optimized structure, and then all the simulation results are analyzed to evaluate the optimization effect based on the evaluation indexes. The simulation results show that optimized shapes of the excitation system and electrode size can yield a better performance in the annular flow measurement.
机译:利用井下环形流量测量系统实时获取井下环形流量信息是井下微流量控制钻井技术的核心和基础。近年来电磁流量计的研究工作对井下环形流量测量的设计提出了挑战。本文提出了一种基于有限元方法的钻井工程环形流量电磁测量系统的设计与优化。首先,介绍了环形流量测量和优化原理。其次,基于COMSOL电磁流量计的基本方程,建立了具有两对线圈的环形流量电磁测量系统的仿真模型。第三,对测量系统的激励系统的结构进行了仿真,并基于优化后的结构对电极半径的大小进行了仿真,然后对所有仿真结果进行分析,以评估优化效果。在评估指标上。仿真结果表明,优化的激励系统形状和电极尺寸可以在环形流量测量中产生更好的性能。

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