2022
DOI: 10.1007/s10596-022-10182-2
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Iterative solution methods for 3D controlled-source electromagnetic forward modelling of geophysical exploration scenarios

Abstract: We develop an efficient and robust iterative framework suitable for solving the linear system of equations resulting from the spectral element discretisation of the curl-curl equation of the total electric field encountered in geophysical controlled-source electromagnetic applications. We use the real-valued equivalent form of the original complex-valued system and solve this arising real-valued two-by-two block system (outer system) using the generalised conjugate residual method preconditioned with a highly … Show more

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Cited by 4 publications
(1 citation statement)
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“…Therefore, it is necessary to carry out inversion (Günther et al 2006;Gallardo and Meju 2003) based on forward modeling data to improve the sensitivity of the ERT advanced detection. In this paper, res2d and res3d will apply to the inversion processing of ANSYS simulated data (An inversion method based on the least square method) (Fiandaca et al 2016;Sriperumbudur et al 2011;Weiss et al 2023;Aydin et al 2022). Then, Model VI was taken as an example to evaluate the effectiveness of this method by the sensitivity of each array.…”
Section: Model Inversionmentioning
confidence: 99%
“…Therefore, it is necessary to carry out inversion (Günther et al 2006;Gallardo and Meju 2003) based on forward modeling data to improve the sensitivity of the ERT advanced detection. In this paper, res2d and res3d will apply to the inversion processing of ANSYS simulated data (An inversion method based on the least square method) (Fiandaca et al 2016;Sriperumbudur et al 2011;Weiss et al 2023;Aydin et al 2022). Then, Model VI was taken as an example to evaluate the effectiveness of this method by the sensitivity of each array.…”
Section: Model Inversionmentioning
confidence: 99%