Efficient Reduced Magnetic Vector Potential Formulation for the Magnetic Field Simulation of Accelerator Magnets

Author:

D’Angelo Laura A. M.1ORCID,Moll Dominik1,Vitrano Andrea2ORCID,Marsic Nicolas1ORCID,Schnaubelt Erik1ORCID,Wozniak Mariusz2ORCID,De Gersem Herbert1ORCID,Auchmann Bernhard3ORCID

Affiliation:

1. Institute for Accelerator Science and Electromagnetic Fields, Technische Universität Darmstadt, Darmstadt, Germany

2. CERN, Meyrin, Switzerland

3. Paul Scherrer Institute, Villigen, Switzerland

Funder

Swiss Accelerator Research and Technology (CHART) in the context of the MagNum Project

German BMBF Project

Graduate School Computational Engineering at TU Darmstadt

Deutsche Forschungsgesellschaft (DFG) Research Training Group 2128 “Accelerator Science and Technology for Energy Recovering Linacs.”

Publisher

Institute of Electrical and Electronics Engineers (IEEE)

Reference30 articles.

1. Realization and First Test Results of the EuCARD 5.4-T REBCO Dipole Magnet

2. ROXIE: Routine for the optimization of magnet X-sections, inverse field calculation and coil end design;Russenschuck

3. Performance of different vector potential formulations in solving multiply connected 3-D eddy current problems

4. Numerical calculation of the saturation induced field errors in the main dipole of CERN’s future large hadron collider;Paul,1997

5. A/sub r/ formulation using edge elements, for the calculation of 3-D fields in superconducting magnets

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