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The effects of tool eccentricity and formation anisotropy on resistivity logs: forward modeling

机译:仪器偏心距和地层各向异性对电阻率测井的影响:正演模拟

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The theory of resistivity logging (RL) originally stems from the Fock-Stefanescu forward problem solution for the stationary electric field E in a piecewise homogeneous isotropic medium, with a single boundary corresponding to the surface of a cylinder unlimited by height. The cylinder simulates a borehole filled with drilling mud of resistivity rho=rho(b), which penetrates a formation with resistivity of rocks rho=rho(r). The primary field E is produced by the charge of a current electrode A placed on the cylinder axis. In this paper the forward problem for the field E is investigated for the electrode A at an arbitrary point off the axis of a borehole embedded in a transversely isotropic formation, with an anisotropy axis parallel to the borehole axis. The solution of forvard problem is used in algorithms and respective software for processing resistivity logs affected by electrode eccentricity and formation anisotropy. The changes caused to apparent resistivity by the two effects are estimated in percent for axial and lateral electrode dispositions. (C) 2016, V.S. Sobolev IGM, Siberian Branch of the RAS. Published by Elsevier B.V. All rights reserved.
机译:电阻率测井理论(RL)最初源于Fock-Stefanescu正问题解决方案,用于分段均质各向同性介质中的固定电场E,其中单个边界对应于不受高度限制的圆柱体表面。圆柱体模拟了一个充满电阻率rho = rho(b)的钻探泥浆的钻孔,该钻孔穿透具有电阻率rho = rho(r)的岩层。通过放置在圆柱轴上的电流电极A的电荷产生主场E。在本文中,研究了电极A在偏离埋入横向各向同性地层的井眼轴线的任意点处的电场E的正向问题,其中各向异性轴平行于井眼轴线。 Forvard问题的解决方案用于处理受电极偏心率和地层各向异性影响的电阻率测井的算法和相应软件中。对于轴向和横向电极布置,估计了由两种效应引起的视电阻率的变化,以百分比表示。 (C)2016,V.S. Sobolev IGM,RAS的西伯利亚分公司。由Elsevier B.V.发布。保留所有权利。

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