方位角
钻孔
偏心率(行为)
各向异性
各向同性
地质学
电阻率和电导率
随钻测量
钢丝绳
随钻测井
测井
区域地质
宝石学
机械
定向钻
几何学
地球物理学
工程地质
光学
岩土工程
水文地质学
钻探
物理
计算机科学
数学
工程类
火山作用
地震学
机械工程
构造学
电信
法学
无线
量子力学
政治学
变质岩石学
作者
Decheng Hong,Hu Li,Wei‐Feng Huang,Hongmei Liu
标识
DOI:10.1111/1365-2478.12852
摘要
ABSTRACT Downhole resistivity measurements provide valuable information for geosteering and formation evaluation. It is important to understand and correct the environmental effects, such as the borehole, the tool eccentricity and the resistivity anisotropy effects, of the measurements based on fast and accurate modelling methods. A new pseudo‐analytic solution for eccentric coaxial and tilted‐coil antennas in the cylindrically multilayered medium with transverse isotropic conductivity was developed. This method can take the eccentric tool, the borehole, the mud invasion and the resistivity anisotropy into account. These formulas enable us to simulate the responses of the downhole induction logging tools, including induction wireline and azimuthal propagation logging‐while‐drilling measurements. Instead of using the prior fictitious boundary, the generalized reflection coefficients are proposed to construct the linear matrix functions to deal with the tool eccentricity. The cylindrical functions are reorganized and presented in forms of ratios. Thus, the proposed formulas obviate the overflow issue in the computation and are more stable and efficient. The proposed approach is compared and validated with other well‐established methods. Simulations and case studies show that: (1) the responses of azimuthal resistivity logging‐while‐drilling tool are affected by the tool's eccentricity in both isotropic and anisotropic medium; (2) sine curve behaviours exist for the phase difference and amplitude ratio of azimuthal resistivity measurements along with different eccentricity azimuth.
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