大地电磁法研究地球大尺度非均匀性

F. X. Bostick, H. Smith
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引用次数: 54

摘要

在Cagniard提出的大地电磁分析中,均质层状地球模型的电阻率剖面是由地球表面自然电场和磁场的切向分量之比确定的。这种类型的分析常常被这样一个事实所混淆,即从一个地点在不同场合记录的数据中获得的视电阻率估计可能相差很大。此外,由E场的一个分量及其正交H场分量计算的视电阻率可能与由另一对正交场分量计算的视电阻率有显著不同。Cantwell指出,这些变化可能,至少部分是由于二维不均匀性和/或各向异性以及随机极化的大地磁场。因此,他建议将地球的波阻抗作为二级张量进行测试。本文描述了一种基于二维波阻抗张量模型的测量和分析程序。结果发现,旋转测量轴以最小化阻抗张量中的主要对角线项,可以对视电阻率剖面中主要不均匀性的方向和大小进行合理一致的估计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of Large-Scale Inhomogeneities in the Earth by the Magnetotelluric Method
In the magnetotelluric analysis proposed by Cagniard, a resistivity profile of a homogeneous stratified earth model is determined from the ratio of the tangential components of the natural electric and magnetic fields at the surface of the earth. This type of analysis is often confused by the fact that apparent resistivity estimates obtained from data recorded at one site on different occasions may vary considerably. Also the apparent resistivities computed from one component of the E field and its orthogonal H field component may be significantly different from those computed from another pair of orthogonal field components. Cantwell points out that these variations may, at least in part, be due to two-dimensional inhomogeneities and/or anisotropies together with randomly polarized magnetotelluric fields. Accordingly he has suggested testing the wave impedance of the earth as a rank two tensor. This paper describes a measurement and analysis procedure developed using a model based on a two-dimensional wave impedance tensor. It was found that a rotation of the measuring axis to minimize the main diagonal terms in the impedance tensor yields a reasonably consistent estimate of the direction and magnitude of a major inhomogeneity in the apparent resistivity profile.
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