海水中由电偶极子和磁偶极子引起的大气电磁场计算研究

Rakibul Islam, Rumana Binte Faruque, Manik Dautta
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引用次数: 5

摘要

嵌入在一般各向异性层状介质中的电/磁偶极子产生的空间点上的电磁场可以通过将电磁场分解为横向电(TE)和横向磁(TM)模式来解析求解[1]。电磁场强度取决于偶极子的性质(电或磁),它们在分层介质中的位置,以及偶极子的相对位置。本文采用三层分层介质模拟了由空气、海水、海底组成的环境。本文采用Tang[1]提供的数学公式计算偶极子天线的电磁场,其中包含了x方向水平磁偶极子(HMDx)、x方向水平电偶极子(HEDx)、垂直磁偶极子(VMD)和垂直电偶极子(VED) 4种类型的Ẽ和H]场的大小和相位信息。提出了参数计算研究来描述i)介质的电和磁特性,ii)偶极子源的性质和方向对指定观测点电磁场的影响。可以观察到,水平电偶极子的贡献在空中观测点具有相当的电场和磁场强度。
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Computational investigation of electromagnetic fields in the atmosphere due to electric and magnetic dipoles placed in seawater
Electromagnetic (EM) fields at a point in space generated by electric/magnetic dipole embedded in a general anisotropic stratified media can be analytically solved [1] by decomposing the fields into transverse electric (TE) and transverse magnetic(TM) modes. The electromagnetic field strengths are dependent on the nature (electric or magnetic) of dipoles, their placement in the stratified media, and relative location of dipoles. A three-layer stratified media has been employed in this paper to model the environment consisting of air, seawater, seabed. The mathematical formulations provided by Tang [1] are used for EM field calculation containing both magnitude and phase information of Ẽ and H̃ fields for dipole antenna of 4 types namely: horizontal magnetic dipole along x- direction (HMDx), horizontal electric dipole along x- direction (HEDx), vertical magnetic dipole (VMD) and vertical electric dipole (VED). Parametric computational investigations are presented to delineate effects of i) the electric and magnetic properties of the media, ii) the nature and orientations of dipole sources, on EM fields at a specified observation point. It is observed that contributions from horizontal electric dipoles have comparable electric and magnetic field strengths at an observation point in the air.
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