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- W2325376927 abstract "This paper presents a parallelized version of the edge-based finite element method with a novel post-processing approach for numerical modeling of an electromagnetic field in complex media. The method uses an unstructured tetrahedral mesh which can reduce the number of degrees of freedom significantly. The linear system of finite element equations is solved using parallel direct solvers which are robust for ill-conditioned systems and efficient for multiple source electromagnetic (EM) modeling. We also introduce a novel approach to compute the scalar components of the electric field from the tangential components along each edge based on field redatuming. The method can produce a more accurate result as compared to conventional approach. We have applied the developed algorithm to compute the EM response for a typical 3D anisotropic geoelectrical model of the off-shore HC reservoir with complex seafloor bathymetry. The numerical study demonstrates that the modeling algorithm is capable of simulating the complex topography and bathymetry that is commonly encountered in controlled source electromagnetic problems." @default.
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- W2325376927 date "2015-08-19" @default.
- W2325376927 modified "2023-10-13" @default.
- W2325376927 title "Three-dimensional parallel edge-based finite element modeling of electromagnetic data with field redatuming" @default.
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- W2325376927 doi "https://doi.org/10.1190/segam2015-5869468.1" @default.
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