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首页> 外文期刊>Radio Science >Derivation of the magnetic field on a metal cylinder excited by a longitudinal magnetic dipole transmitter: II. Cylinder in a two-layer dissipative dielectric medium
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Derivation of the magnetic field on a metal cylinder excited by a longitudinal magnetic dipole transmitter: II. Cylinder in a two-layer dissipative dielectric medium

机译:由纵向磁偶极子发射器激发的金属圆柱上的磁场的推导:II。两层耗散介电介质中的圆柱体

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摘要

We derive an exact convergent analytical solution for the complex frequency-dependent magnetic field on the surface of an infinitely long and perfectly conducting metal cylinder situated in a cylindrically layered dissipative medium. The inhomogeneous medium consists of two exterior cylindrical layers that are concentric with the cylinder. The magnetic field on the cylinder is excited by a longitudinally oriented oscillating magnetic dipole transmitter on the cylinder surface. An exact analytical solution to this problem has not been previously published and is of theoretical as well as practical importance, e.g., in modeling the responses of electromagnetic wave propagation well logging tools. It is shown that the magnetic field on the cylinder surface can be expressed as a real-axis integral; however, the integrand oscillates rapidly and diverges for large values of the integration variable. The real-axis integral is replaced by the sum of two convergent branch line integrals and a sum over the residues of the complex poles in the integrand of the real-axis integral. The poles correspond physically to waveguide modes that propagate with discrete wave numbers. A pole search algorithm is developed to locate the positions of the poles and compute their residues. Phase shifts and attenuations of the magnetic field between receivers for a 1.1 GHz well logging tool are computed to elucidate the pole spectra and the relative contributions of the waveguide modes and the branch cut integrals for different thicknesses of the innermost dielectric layer and for different layer properties.
机译:我们为位于圆柱状分层耗散介质中的无限长且导电完美的金属圆柱体表面上的复杂频率相关磁场导出了精确的收敛分析解决方案。不均匀介质由与圆柱体同心的两个外部圆柱体层组成。圆柱体上的磁场由圆柱体表面上的纵向定向振荡磁偶极子发射器激发。对该问题的精确分析解决方案先前尚未发表,并且在例如电磁波传播测井工具的响应建模中具有理论和实践意义。结果表明,圆柱表面的磁场可以表示为实轴积分;但是,对于较大的积分变量,被积数会快速振荡并发散。实轴积分被两个收敛分支线积分的和与实轴积分的被积物中复极的残差的和所代替。磁极物理上对应于以离散波数传播的波导模式。开发了极点搜索算法以定位极点的位置并计算其残差。计算了1.1 GHz测井工具的接收器之间磁场的相移和衰减,以阐明极谱以及波导模式和分支切割积分的最内层介电层厚度和层特性的相对贡献。 。

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