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Electro-Thermal Modelling by Novel Variational Methods: Racetrack Coil in Short-Circuit

Applied Physics 2025-02-18 v2

Abstract

The design of superconducting applications containing windings of superconducting wires or tapes requires electro-thermal quench modelling. In this article, we present a reliable numerical method based on a variational principle and we benchmark it to a conventional finite difference method that we implemented in C++. As benchmark problem, we consider a racetrack coil made of REBCO superconducting tape under short circuit, approximated as a DC voltage that appears at the initial time. Results show that both models agree with each other and analytical limits. Since both models take screening currents into account, they are promising for the design of magnets (especially fast-ramp magnets) and power applications, such as the stator windings of superconducting motors or generators.

Keywords

Cite

@article{arxiv.2302.01673,
  title  = {Electro-Thermal Modelling by Novel Variational Methods: Racetrack Coil in Short-Circuit},
  author = {Enric Pardo and Anang Dadhich},
  journal= {arXiv preprint arXiv:2302.01673},
  year   = {2025}
}

Comments

Accepted Version

R2 v1 2026-06-28T08:31:14.602Z