Παρακολούθηση
Erik Schnaubelt
Erik Schnaubelt
CERN, TU Darmstadt
Η διεύθυνση ηλεκτρονικού ταχυδρομείου έχει επαληθευτεί στον τομέα cern.ch - Αρχική σελίδα
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Παρατίθεται από
Παρατίθεται από
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An open-source finite element quench simulation tool for superconducting magnets
A Vitrano, M Wozniak, E Schnaubelt, T Mulder, E Ravaioli, A Verweij
IEEE Transactions on Applied Superconductivity 33 (5), 1-6, 2023
112023
Thermal thin shell approximation towards finite element quench simulation
E Schnaubelt, M Wozniak, S Schöps
Superconductor Science and Technology 36 (4), 044004, 2023
112023
Electromagnetic Simulation of No-Insulation Coils Using H – Thin Shell Approximation
E Schnaubelt, M Wozniak, S Schöps, A Verweij
IEEE Transactions on Applied Superconductivity 33 (5), 1-6, 2023
72023
Magneto-Thermal Thin Shell Approximation for 3D Finite Element Analysis of No-Insulation Coils
E Schnaubelt, S Atalay, M Wozniak, J Dular, C Geuzaine, ...
IEEE Transactions on Applied Superconductivity, 2023
22023
External Coil Coupled Loss Induced Quench (E-CLIQ) System for the Protection of LTS Magnets
T Mulder, B Bordini, E Ravaioli, E Schnaubelt, M Wozniak, A Verweij
IEEE Transactions on Applied Superconductivity 33 (5), 1-5, 2023
22023
A comparison between different formulations for solving axisymmetric time-harmonic electromagnetic wave problems
E Schnaubelt, N Marsic, H De Gersem
Scientific Computing in Electrical Engineering: SCEE 2020, Eindhoven, The …, 2021
22021
Parallel-in-Time Integration of Transient Phenomena in No-Insulation Superconducting Coils Using Parareal
E Schnaubelt, M Wozniak, J Dular, IC Garcia, A Verweij, S Schöps
arXiv preprint arXiv:2404.13333, 2024
12024
An open-source 3D FE quench simulation tool for no-insulation HTS pancake coils
S Atalay, E Schnaubelt, M Wozniak, J Dular, G Zachou, S Schöps, ...
Superconductor Science and Technology, 2024
12024
Quench Co-Simulation of Canted Cos-Theta Magnets
M Wozniak, E Schnaubelt, J Dular, E Ravaioli, A Verweij
IEEE Transactions on Applied Superconductivity, 2023
12023
Comparison of 2.5D finite element formulations with perfectly matched layers for solving open axisymmetric electromagnetic cavity problems
E Schnaubelt, H De Gersem, N Marsic
International Journal of Numerical Modelling: Electronic Networks, Devices …, 2023
12023
Mortar Thin Shell Approximation for Analysis of Superconducting Accelerator Magnets
R Hahn, E Schnaubelt, M Wozniak, C Geuzaine, S Schöps
arXiv preprint arXiv:2405.01076, 2024
2024
Coupled Axial and Transverse Currents Method for Finite Element Modelling of Periodic Superconductors
J Dular, F Magnus, E Schnaubelt, A Verweij, M Wozniak
arXiv preprint arXiv:2404.09775, 2024
2024
Efficient Reduced Magnetic Vector Potential Formulation for the Magnetic Field Simulation of Accelerator Magnets
LAM D’Angelo, D Moll, A Vitrano, N Marsic, E Schnaubelt, M Wozniak, ...
IEEE Transactions on Magnetics, 2024
2024
Thermal Thin Shell Approximation for 3D Finite Element Quench Simulation of Insulated HTS Coils
E Schnaubelt, M Wozniak, S Schöps
8th International Workshop on Numerical Modelling of High Temperature …, 2022
2022
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