Ground-wire Source TEM 3D Full Time Multinary Inversion Using Adaptive Regulation

Author:

Luan Xiaodong123,Di Qingyun45,Xue Guoqing45,Chen Bin13

Affiliation:

1. China Aero Geophysical Survey and Remote Sensing Center for Natural Resources, Beijing, 100083, People's Republic of China

2. Key Laboratory of Geophysical Electromagnetic Probing Technologies of Ministry of Natural Resources, Institute of Geophysical and Geochemical Exploration, Chinese Academy of Geological Science, Langfang, 065000, People's Republic of China

3. Key Laboratory of Airborne Geophysics and Remote Sensing Geology, MNR, Beijing, 100083, People's Republic of China

4. Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing, 100029, People's Republic of China

5. Institute of Earth Science, Chinese Academy of Sciences, Beijing, 100029, People's Republic of China

Abstract

Ground-wire source transient electromagnetic method (GTEM) provides better investigation ability than loop source TEM at a given noise level and decay time. However, at the present time, the method still stays in the one-dimensional inversion interpretation stage. Since actual geological structures are three-dimensionally distributed, the three-dimensional electromagnetic forward and inversion are crucial for understanding the electromagnetic responses of complex geological structures. Moreover, the traditional 3D smooth inversions of geophysical data have been found to inaccurately reflect small-scale and isolated anomalies. In this study, a multinary inversion method was introduced and applied to GTEM inversions. It was found that the proposed method had the ability to enable GTEM to more accurately delineate anomalous bodies when applied to detect high-resistivity target. Then, for the purpose of avoiding the need for multiple inversion tests to determine the regularization factors, a self-adaptive scheme was proposed based on the differences between the data fitting functional and the model functional during each iteration step. It was observed that by introducing the multinary inversion with adaptive regulation, more stable and accurate inversion results were obtained. In the current study, the numerical simulation results had successfully verified that the proposed multinary inversion method had provided better resolution than the traditional inversion methods.

Publisher

Environmental and Engineering Geophysical Society

Subject

Geophysics,Geotechnical Engineering and Engineering Geology,Environmental Engineering

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