EffECT
Breaking frontiers of Eddy Current Testing simulations through Discrete de Rham methods
Marie Skłodowska-Curie Actions, 2024–2026
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Project Description
EffECT is a two-year project funded by the Marie Skłodowska-Curie Actions.
The project develops advanced Discrete de Rham numerical methods on polyhedral
meshes, with applications to electromagnetic simulations and eddy current testing.
The project has two main goals:
- To develop new mathematical and numerical tools for the analysis of Discrete de Rham numerical schemes.
- To apply these tools to real-world eddy current testing configurations.
The central idea is to integrate the mathematical capabilities of DDR methods,
in particular their support for general polyhedral meshes and high-order polynomial
approximations, into eddy-current models.
People
- Dr. Silvano Pitassi, Principal Investigator.
- Prof. Daniele A. Di Pietro, Advisor.
Research Directions
- Discrete functional analysis for polyhedral de Rham complexes.
- Uniform Poincaré-type estimates and stability of discrete complexes.
- Conforming liftings, adjoint consistency, and stabilization-free formulations.
- Cohomology, topology, and compatible discretizations for electromagnetic models.
Publications and Preprints
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