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首页> 外文期刊>Journal of environmental & engineering geophysics >Preliminary understanding of near-field effect of CSAMT in electric azimuthally anisotropic half-space
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Preliminary understanding of near-field effect of CSAMT in electric azimuthally anisotropic half-space

机译:CSAMT在电方位各向异性半空间近场效应的初步认识

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This paper reviews the spatial characteristics of electromagnetic fields induced by a horizontal electric dipole on the surface of a horizontal layered earth with azimuthal anisotropy. It is well known that depth of investigation becomes independent of frequency and dependent upon array geometry in the near-field zone, thus limiting the interpretation of data by conventional MT methods. On the basis of existing theory, we estimate the far-field distance (FFD) of a homogeneous half-space with azimuthal anisotropy through numerical modeling. To define FFD, there are two criteria suggested in the study. If the anisotropic parameter is constant, the FFD is linearly increasing with resistivity increasing in strike direction for all operating frequencies. From comprehensive analysis, the FFD along the strike direction should be estimated by comparing a relative difference between the responses of CSAMT and MT in TM-mode; the FFD along the direction perpendicular to the strike should be estimated by comparing relative difference between responses of CSAMT and MT in TE-mode. In an azimuthally anisotropic half-space, the near-field effect is more severe in the strike direction than in its orthogonal direction. These simple but quantitative analyses aim to understand the near-field effect before inverting data using a far field approximation for CSAMT exploration in azimuthally anisotropic conductive media.
机译:本文综述了具有方位各向异性的水平层状地球表面水平偶极子感应的电磁场的空间特征。众所周知,研究深度与频率无关,并取决于近场区域的阵列几何形状,从而限制了传统机器翻译方法对数据的解释。在现有理论的基础上,通过数值模拟估计了具有方位各向异性的齐次半空间的远场距离(FFD)。为了定义FFD,研究中提出了两个标准。如果各向异性参数恒定,则FFD线性增加,电阻率在所有工作频率的走向方向上增加。综合分析,通过比较TM模式下CSAMT和MT响应的相对差异来估计沿走向方向的FFD;应通过比较 CSAMT 和 MT 在 TE 模式下响应之间的相对差异来估计沿垂直于走向方向的 FFD。在方位各向异性半空间中,走向方向的近场效应比正交方向的近场效应更严重。这些简单但定量的分析旨在了解近场效应,然后使用远场近似在方位各向异性导电介质中进行CSAMT探索。

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