The EXTRA method enables accurate 3D magneto-thermal FE simulations of large-scale NI HTS magnets by explicitly resolving critical turns while homogenizing others, reducing computation time by up to 13x on benchmarks.
High-temperature superconductors and their large-scale applications,
3 Pith papers cite this work, alongside 53 external citations. Polarity classification is still indexing.
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2026 3representative citing papers
Insulated independent current feeding in hybrid CORC-TSTC cables reduces transport AC losses by up to 90% by suppressing inter-conductor redistribution and waveform distortion.
An open-source curl-conforming H-formulation in Firedrake reproduces COMSOL magnetisation of a Bi2212 wire to ~1% and runs unchanged in Google Colab.
citing papers explorer
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Explicit Turn Resolution with Anisotropic Homogenisation for Efficient 3D Magneto-Thermal Finite-Element Simulation of Large-Scale No-Insulation HTS Magnets
The EXTRA method enables accurate 3D magneto-thermal FE simulations of large-scale NI HTS magnets by explicitly resolving critical turns while homogenizing others, reducing computation time by up to 13x on benchmarks.
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Massive Mitigation of Transport AC Losses in Superconducting Hybrid CORC-TSTC Cables
Insulated independent current feeding in hybrid CORC-TSTC cables reduces transport AC losses by up to 90% by suppressing inter-conductor redistribution and waveform distortion.
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A Cloud-Accessible Open-Source Framework for the Electromagnetic Modelling of Applied Superconductors
An open-source curl-conforming H-formulation in Firedrake reproduces COMSOL magnetisation of a Bi2212 wire to ~1% and runs unchanged in Google Colab.