LAPSE:2023.15213
Published Article

LAPSE:2023.15213
HPC Geophysical Electromagnetics: A Synthetic VTI Model with Complex Bathymetry
March 2, 2023
Abstract
We introduce a new synthetic marine model for 3D controlled-source electromagnetic method (CSEM) surveys. The proposed model includes relevant features for the electromagnetic geophysical community such as large conductivity contrast with vertical transverse isotropy and a complex bathymetry profile. In this paper, we present the experimental setup and several 3D CSEM simulations in the presence of a resistivity unit denoting a hydrocarbon reservoir. We employ a parallel and high-order vector finite element routine to perform the CSEM simulations. By using tailored meshes, several scenarios are simulated to assess the influence of the reservoir unit presence on the electromagnetic responses. Our numerical assessment confirms that resistivity unit strongly influences the amplitude and phase of the electromagnetic measurements. We investigate the code performance for the solution of fundamental frequencies on high-performance computing architectures. Here, excellent performance ratios are obtained. Our benchmark model and its modeling results are developed under an open-source scheme that promotes easy access to data and reproducible solutions.
We introduce a new synthetic marine model for 3D controlled-source electromagnetic method (CSEM) surveys. The proposed model includes relevant features for the electromagnetic geophysical community such as large conductivity contrast with vertical transverse isotropy and a complex bathymetry profile. In this paper, we present the experimental setup and several 3D CSEM simulations in the presence of a resistivity unit denoting a hydrocarbon reservoir. We employ a parallel and high-order vector finite element routine to perform the CSEM simulations. By using tailored meshes, several scenarios are simulated to assess the influence of the reservoir unit presence on the electromagnetic responses. Our numerical assessment confirms that resistivity unit strongly influences the amplitude and phase of the electromagnetic measurements. We investigate the code performance for the solution of fundamental frequencies on high-performance computing architectures. Here, excellent performance ratios are obtained. Our benchmark model and its modeling results are developed under an open-source scheme that promotes easy access to data and reproducible solutions.
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Keywords
electromagnetic geophysical, high-order methods, HPC, numerical simulations, tailored meshes
Subject
Suggested Citation
Castillo-Reyes O, de la Puente J, Cela JM. HPC Geophysical Electromagnetics: A Synthetic VTI Model with Complex Bathymetry. (2023). LAPSE:2023.15213
Author Affiliations
Journal Name
Energies
Volume
15
Issue
4
First Page
1272
Year
2022
Publication Date
2022-02-10
ISSN
1996-1073
Version Comments
Original Submission
Other Meta
PII: en15041272, Publication Type: Journal Article
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LAPSE:2023.15213
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https://doi.org/10.3390/en15041272
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Mar 2, 2023
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