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Published September 2, 2021 | Version 0.1
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3D magnetotelluric modeling using high-order tetrahedral Nédélec elementson massively parallel computing platforms

  • 1. Barcelona Supercomputing Center
  • 2. Institut Geomodels, Departament de Dinàmica de la Terra i de l'OceàUniversity of Barcelona
  • 3. Department of Signal Theory and Communications, University Carlos III of Madrid

Description

Accompanying data to journal article

Castillo-Reyes, O., Modesto, D., Queralt, P., Marcuello, A., Ledo, J., Amor-Martin, A., de la Puente, J., García-Castillo, L.E. (2021) 3D magnetotelluric modeling using high-order tetrahedral Nédélec elements on massively parallel computing platforms. Submitted to Computers & Geosciences

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Additional details

Funding

ENERXICO – Supercomputing and Energy for Mexico 828947
European Commission
MATHROCKS – Multiscale Inversion of Porous Rock Physics using High-Performance Simulators: Bridging the Gap between Mathematics and Geophysics 777778
European Commission

References

  • Castillo-Reyes, O., de la Puente, J., & Cela, J. M. (2018). PETGEM: A parallel code for 3D CSEM forward modeling using edge finite elements. Computers & Geosciences, 119, 123-136.
  • Castillo-Reyes, O., de la Puente, J., García-Castillo, L. E., & Cela, J. M. (2019). Parallel 3-D marine controlled-source electromagnetic modelling using high-order tetrahedral Nédélec elements. Geophysical Journal International, 219(1), 39-65.