Modeling and analysis of CSAMT field source effect and its characteristics

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Abstract

Controlled-source audio-frequency magnetotellurics (CSAMT) has been a highly successful geophysical tool used in a variety of geological exploration studies for many years. However, due to the artificial source used in the CSAMT technique, two important factors are considered during interpretation: non-plane-wave or geometric effects and source overprint effects. Hence, in this paper we simulate the source overprint effects and analyzed the rule and characteristics of its influence on CSAMT applications. Two-dimensional modeling was carried out using an adaptive unstructured finite element method to simulate several typical models. Also, we summarized the characteristics and rule of the source overprint effects and analyzed its influence on the data taken over several mining areas. The results obtained from the study shows that the occurrence and strength of the source overprint effect is dependent on the location of the source dipole, in relation to the receiver and the subsurface geology. In order to avoid source overprint effects, three principle were suggested to determine the best location for the grounded dipole source in the field.

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Da, L., Xiaoping, W., Qingyun, D., Gang, W., Xiangrong, L., Ruo, W., … Mingxin, Y. (2016). Modeling and analysis of CSAMT field source effect and its characteristics. Journal of Geophysics and Engineering, 13(1), 49–58. https://doi.org/10.1088/1742-2132/13/1/49

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