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首页> 外文期刊>Journal of Applied Geophysics >Analysis and interpretation of anomalous conductivity and magnetic permeability effects in time domain electromagnetic data Part I: Numerical modeling
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Analysis and interpretation of anomalous conductivity and magnetic permeability effects in time domain electromagnetic data Part I: Numerical modeling

机译:时域电磁数据中异常电导率和磁导率效应的分析和解释第一部分:数值模拟

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Time domain electromagnetic (TDEM) response is usually associated with eddy currents in conductive bodies, since this is the dominant effect. However, other effects, such as displacement currents from dielectric processes and magnetic fields associated with rock magnetization, can contribute to TDEM response. In this paper we analyze the effect of magnetization on TDEM data. We use a 3-D code based on finite-difference method, developed by Wang and Hohmann [Geophysics 58 (1993) 797], to study transient electromagnetic field propagation through a medium containing bodies with both anomalous conductivity and anomalous magnetic permeability. The remarkable result is that the combination of anomalous conductivity and permeability within the same body could increase significantly the anomalous TDEM response in comparison with purely conductive or purely magnetic anomalies. This effect has to be taken into account in interpretation of TDEM data over electrical inhomogeneous structures with potentially anomalous magnetic permeability. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 9]
机译:时域电磁响应(TDEM)通常与导电体中的涡流相关,因为这是主要的影响。但是,其他影响(例如来自介电过程的位移电流和与岩石磁化相关的磁场)也可能会导致TDEM响应。在本文中,我们分析了磁化对TDEM数据的影响。我们使用由Wang和Hohmann [Geophysics 58(1993)797]开发的基于有限差分法的3-D代码来研究瞬态电磁场在包含异常电导率和异常磁导率的物体的介质中的传播。引人注目的结果是,与纯导电或纯磁异常相比,同一体内异常电导率和磁导率的组合可显着增加TDEM异常响应。在解释具有潜在异常磁导率的电非均匀结构上的TDEM数据时,必须考虑到这种影响。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:9]

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