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UNDERGROUND IMAGING BY FREQUENCY-DOMAIN ELECTROMAGNETIC MIGRATION

机译:频率域电磁迁移的地下成像

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A new method of the resistivity imaging based on frequency-domain electromagnetic migration is developed. Electromagnetic (EM) migration involves downward diffusion of observed EM fields whose time flow has been reversed. Unlike downward analytical continuation, migration is a stable procedure that accurately restores the phase of the upgoing field inside the Earth. This method is indented for the processing and interpretation of EM data collected for both TE and TM modes of plane-wave excitation. Until recently, the method could be applied only for determining the position of anomalous structures and for finding interfaces between layers of different conductivity. There were no well developed approaches to the resistivity imaging, which is the key problem in the inversion of EM data. We provide a novel approach to determining not only the position of anomalous structures but their resistivity as well. The main difficulty in the practical realization of this approach is determining the background resistivity distribution for migration. We discuss the method of the solution of this problem based on differential transformation of apparent resistivity curves. The final goal of migration is to provide a first order interpretation using a computational effort equivalent to a forward modeling calculation. [References: 46]
机译:提出了一种基于频域电磁迁移的电阻率成像新方法。电磁(EM)迁移涉及观察到的电磁场的向下扩散,这些电磁场的时间流已反向。与向下分析的延续不同,迁移是一种稳定的过程,可以准确地恢复地球内部上行磁场的相位。该方法适用于处理和解释为平面波激发的TE和TM模式收集的EM数据。直到最近,该方法仅可用于确定异常结构的位置并用于找到不同电导率的层之间的界面。电阻率成像尚无完善的方法,这是电磁数据反演中的关键问题。我们提供了一种新颖的方法,不仅可以确定异常结构的位置,还可以确定其电阻率。该方法实际实现中的主要困难是确定迁移的背景电阻率分布。我们讨论了基于视电阻率曲线的微分变换来解决该问题的方法。迁移的最终目标是使用等效于前向建模计算的计算量来提供一阶解释。 [参考:46]

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