On the Stability of Mixed Finite-Element Formulations for High-Temperature Superconductors
arXiv:2106.00313 · doi:10.1109/TASC.2021.3098724
Abstract
In this work, we present and analyze the numerical stability of two coupled finite element formulations. The first one is the h-a-formulation and is well suited for modeling systems with superconductors and ferromagnetic materials. The second one, the so-called t-a-formulation with thin-shell approximation, applies for systems with thin superconducting domains. Both formulations involve two coupled unknown fields and are mixed on the coupling interfaces. Function spaces in mixed formulations must satisfy compatibility conditions to ensure stability of the problem and reliability of the numerical solution. We propose stable choices of function spaces using hierarchical basis functions and demonstrate the effectiveness of the approach on simple 2D examples.
Cited by in corpus (4)
- COMSOL implementation of the H--formulation with thin cuts for modeling superconductors with transport currents
- - formulation in Sparselizard combined with domain decomposition methods for modeling superconducting tapes, stacks, and twisted wires
- What Formulation Should One Choose for Modeling a 3D HTS Motor Pole with Ferromagnetic Materials?
- Foil Conductor Model for Efficient Simulation of HTS Coils in Large Scale Applications