References

This section contains all the references used for the different parts of the report.

  • LNCMI - lncmi.cnrs.fr/

  • Cemosis - www.cemosis.fr

  • Cecile Daversin - Catty. Reduced basis method applied to large non-linear multi-physics problems: application to high field magnets design. Electromagnetism. Université de Strasbourg, 2016. p56-64 PDF

  • Finite-Element Formulation for Systems with High-Temperature Superconductors, Julien Dular, Christophe Gauzaine, Benoît Vanderheyden, IEEE Transactions on Applied Superconductivity VOL. 30 NO. 3, April 2020, PDF

  • A numerical model to introduce students to AC loss calculation in superconductors. Francesco Grilli and Enrico Rizzo 2020 Eur. J. Phys. 41 045203

  • COMSOL Implementation of the H-ϕ-Formulation With Thin Cuts for Modeling Superconductors With Transport Currents, A. Arsenault, B. d. S. Alves and F. Sirois, in IEEE Transactions on Applied Superconductivity, vol. 31, no. 6, pp. 1-9, Sept. 2021, Art no. 6900109, doi: 10.1109/TASC.2021.3097245. PDF

  • Real-time simulation of large-scale HTS systems: multi-scale and homogeneous models using the T–A formulation, Edgar Berrospe-Juarez et al 2019 Supercond. Sci. Technol. 32 065003, PDF

  • Elasticity adn toolbox Coefficient Form PDEs, Céline Van Landeghem, 2021, unpublished, Download the PDF

  • Coupled modelling and simulation of electromagnets in stationnary and instationnary modes (axisymmetric and 3D), J. Nadarasa, June 2 2015, unpublished, page 20-24.

  • Theorical Physics Reference, Ondřej Čertík, November 29 2011, page 85-90.

  • Python MPH - mph.readthedocs.io/en/stable/index.html

  • Variable Stepsize, Variable Order Methods for Partial Differential Equations\\}_, DeCaria, V. P., University of Pittsburgh, ProQuest Dissertations Publishing, 2019.22615879. }