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A Robust Mode-Matching Algorithm for the Analysis of Triaxial Well-Logging Tools in Anisotropic Geophysical Formations

机译:各向异性地球物理地层三轴测井工具分析的鲁棒模式匹配算法

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In this paper, a new pseudoanalytical axial mode-matching formulation is introduced to provide a flexible technique for analyzing direction well-logging tools in anisotropic formations. The presented technique does not rely on spatial discretization as former well-known methods. In this problem, a number of coil antennas with arbitrary relative tilt angle with respect to the symmetry axis are used to radiate electromagnetic fields in a cylindrically layered medium with both axial and radial stratifications, composed of a metallic mandrel, a borehole, and a surrounding layered earth formation. This configuration corresponds to that of triaxial well-logging tools used for oil and gas exploration. Our approach combines closed-form solutions of Maxwell's equations for uniaxially anisotropic media in cylindrical coordinates with the generalized scattering matrix (GSM) at each axial discontinuity based on the mode-matching technique. The electromagnetic field from the tilted-coil source is represented by a set of modal coefficients that, after computation using GSM matrices, are used to extract the transimpedances of the well-logging tool.
机译:本文提出了一种新的拟解析轴向模式匹配公式,为各向异性地层中方向测井工具的分析提供了灵活的技术。提出的技术不像以前的众所周知的方法那样依赖于空间离散化。在这个问题中,使用相对于对称轴具有任意相对倾斜角的多个线圈天线,在具有轴向和径向分层的圆柱形层状介质中辐射电磁场,该介质由金属心轴,钻孔和周围环境组成分层的地球形成。此配置对应于用于石油和天然气勘探的三轴测井工具。我们的方法基于模式匹配技术,将圆柱坐标系中单轴各向异性介质的麦克斯韦方程的闭式解与每个轴向不连续点处的广义散射矩阵(GSM)相结合。来自倾斜线圈源的电磁场由一组模态系数表示,该模态系数在使用GSM矩阵进行计算后,用于提取测井工具的跨阻。

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