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Electromagnetic Fields due to Electric Dipoles in Stratified Media

机译:分层介质中电偶极子的电磁场

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摘要

The electromagnetic fields excited by horizontal and vertical electric dipoles in stratified media are derived using vector potentials which have been studied in past decades. However, unfortunately, it is difficult to find papers and/ or textbooks which describe the derivation of the electromagnetic fields in detail. The main objectives of this paper are to uniquely derive the electromagnetic fields due to electric dipoles in stratified media in detail, and to develop and to demonstrate the computation code which has flexibility. The transmitter dipole and receiver can be located arbitrary in stratified media with anisotropic and/or complex resistivity in the developed technology. The results of synthetic studies show that the developed code can compute accurate and reliable electromagnetic fields. The developed technology can be applied not only for the ID electromagnetic forward and inverse modeling, but also for the background field and Green's tensor computations which are required for the 3D electromagnetic forward and inverse modeling based on the integral equation method. Further, the technique may be used for the primary field computation required for the 3D electromagnetic forward and inverse modeling based on the differential equation methods with secondary field formulation.
机译:利用近几十年来研究的矢量势,导出了分层介质中水平和垂直电偶极子激发的电磁场。然而,不幸的是,很难找到详细描述电磁场起源的论文和/或教科书。本文的主要目的是详细推导分层介质中电偶极子产生的电磁场,并开发和演示具有灵活性的计算程序。在所开发的技术中,发射偶极子和接收器可以位于各向异性和/或复电阻率分层介质中的任意位置。综合研究结果表明,所开发的程序能够计算出准确可靠的电磁场。所开发的技术不仅适用于ID电磁正反演建模,还适用于基于积分方程法的三维电磁正反演建模所需的背景场和格林张量计算。此外,该技术还可用于基于微分方程法和二次场公式的三维电磁正演和反演建模所需的一次场计算。

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