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3D modelling of the electromagnetic response of geophysical targets using the FDTD method

Journal Article · · Geophysical Prospecting
 [1]
  1. Univ. of Arizona, Tucson, AZ (United States). Mining and Geological Engineering Dept.

A publicly available and maintained electromagnetic finite-difference time domain (FDTD) code has been applied to the forward modelling of the response of 1D, 2D and 3D geophysical targets to a vertical magnetic dipole excitation. The FDTD method is used to analyze target responses in the 1 MHz to 100 MHz range, where either conduction or displacement currents may have the controlling role. The response of the geophysical target to the excitation is presented as changes in the magnetic field ellipticity. The results of the FDTD code compare favorably with previously published integral equation solutions of the response of 1D targets, and FDTD models calculated with different finite-difference cell sizes are compared to find the effect of model discretization on the solution. The discretization errors, calculated as absolute error in ellipticity, are presented for the different ground geometry models considered, and are, for the most part, below 10% of the integral equation solutions. Finally, the FDTD code is used to calculate the magnetic ellipticity response of a 2D survey and a 3D sounding of complicated geophysical targets. The response of these 2D and 3D targets are too complicated to be verified with integral equation solutions, but show the proper low- and high-frequency responses.

Sponsoring Organization:
USDOE
OSTI ID:
277559
Journal Information:
Geophysical Prospecting, Journal Name: Geophysical Prospecting Journal Issue: 3 Vol. 44; ISSN GPPRAR; ISSN 0016-8025
Country of Publication:
United States
Language:
English

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