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Simulation of multifrequency borehole resistivity measurements through metal casing using a goal-oriented hp finite-element method

机译:目标导向的hp有限元法模拟通过金属套管进行的多频钻孔电阻率测量

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The authors simulate multifrequency through-casing resistivity tool measurements operating at different frequencies in a borehole environment for the assessment of rock-formation properties. Rock formations are assumed to exhibit axial symmetry around the axis of a vertical borehole. The simulations are performed with a goal-oriented hp-adaptive finite-element method that delivers exponential convergence rates in terms of the quantity of interest (for example, the second vertical difference of the electric potential) against the CPU time. Numerical results confirm the efficiency and accuracy of the method, allowing for high-accuracy and reliable simulations of borehole logging measurements in the presence of highly conductive steel casing. The study of different tool configurations shows the advantages of using calibrated instruments with toroid antennas located on the borehole wall. The agreement between the numerical and analytical results, when the latter is available, is quantified. Errors on the simulations are consistently below 0.1%.
机译:作者模拟了在井眼环境中以不同频率运行的多频套管电阻率工具测量,以评估岩石形成特性。假定岩层表现出围绕垂直井眼轴线的轴向对称性。仿真是通过面向目标的hp自适应有限元方法执行的,该方法针对CPU时间,根据感兴趣的量(例如,电势的第二个垂直差)提供指数收敛速率。数值结果证实了该方法的效率和准确性,可以在存在高导电性钢套管的情况下对钻孔测井测量结果进行高精度和可靠的模拟。对不同工具配置的研究表明,使用带有位于井壁上的环形天线的校准仪器的优势。当数值和分析结果可用时,将量化它们之间的一致性。模拟误差始终低于0.1%。

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