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Pseudo-Analytical Modeling of Tilted-Coil Antennas in Anisotropic Geophysical Formations

机译:各向异性地球物理地层中倾斜线圈天线的伪解析模型

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In this paper we present an efficient mode-matching technique to analyze tilted-coil antennas in anisotropic geophysical formations. 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 comprised of a metallic mandrel, a borehole, and a surrounding layered Earth formation. This configuration corresponds to that of directional well-logging tools used in oil and gas exploration. Our technique combines closed-form solutions for the Maxwell's Equations in uniaxially anisotropic and radially-stratified cylindrical coordinates with the generalized scattering matrix (GSM) at each axial discontinuity based on the modematching technique. The field from the transmitter tilted-coil source is represented by a set of modal coefficients which, after computation using GSM matrices, are used to compute the transimpedances. We present validation results which show that our technique can efficiently model directional well-logging tools used for oil and gas exploration.
机译:在本文中,我们提出了一种有效的模式匹配技术来分析各向异性地球物理地层中的倾斜线圈天线。在这个问题中,相对于对称轴具有任意相对倾斜角的多个线圈天线被用于在由金属心轴,钻孔和周围的分层地球构造组成的圆柱形分层介质中辐射电磁场。该配置对应于油气勘探中使用的定向测井工具的配置。我们的技术将基于模式匹配技术的单轴各向异性和径向分层圆柱坐标系中的麦克斯韦方程组的封闭形式解与每个轴向不连续点处的广义散射矩阵(GSM)相结合。来自发射器倾斜线圈源的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计算互阻抗。我们提供的验证结果表明,我们的技术可以有效地建模用于油气勘探的定向测井工具。

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