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physics.acc-ph2024

Simulation of Rutherford Cable AC Loss and Magnetization with the Coupled Axial and Transverse Currents Method

Julien Dular, Fredrik Magnus, Erik Schnaubelt +2

The coupled axial and transverse currents (CATI) method was recently introduced to model the AC loss and magnetization in twisted composite superconducting strands with low computa…

physics.acc-ph2024

Influence of Critical Current Distribution on Operation, Quench Detection and Protection of HTS Pancake Coils

Mariusz Wozniak, Erik Schnaubelt, Sina Atalay +5

High-temperature superconductor (HTS) coated conductors (CC) are often wound into pancake coils with electrical insulation in-between the turns. The copper terminals are used for c…

physics.acc-ph2024

Coupled Axial and Transverse Currents Method for Finite Element Modelling of Periodic Superconductors

Julien Dular, Fredrik Magnus, Erik Schnaubelt +2

In this paper, we propose the Coupled Axial and Transverse currents (I) (CATI) method, as an efficient and accurate finite element approach for modelling the electric and magnetic…

physics.acc-ph2024

Helicoidal Transformation Method for Finite Element Models of Twisted Superconductors

Julien Dular, François Henrotte, André Nicolet +3

This paper deals with the modelling of superconducting and resistive wires with a helicoidal symmetry, subjected to an external field and a transport current. Helicoidal structures…

cs.CE2024

Parallel-in-Time Integration of Transient Phenomena in No-Insulation Superconducting Coils Using Parareal

Erik Schnaubelt, Mariusz Wozniak, Julien Dular +3

High-temperature superconductors (HTS) have the potential to enable magnetic fields beyond the current limits of low-temperature superconductors in applications like accelerator ma…