The methodological background of the virtual element method is presented and applied to model permanent magnets via the Kikuchi formulation, considering both linear and non-linear magnetic permeability of the ferromagnetic regions. The authors examine several study cases: a permanent magnet in free space, a permanent magnet energising a ferromagnetic core, a four-pole permanent-magnet motor. In order to validate the proposed approach, comparisons with both virtual and finite element potential formulations are presented and discussed.

Dassi, F., Di Barba, P., Russo, A. (2020). Virtual element method and permanent magnet simulations: potential and mixed formulations. IET SCIENCE, MEASUREMENT & TECHNOLOGY, 14(10), 1098-1104 [10.1049/iet-smt.2020.0322].

Virtual element method and permanent magnet simulations: potential and mixed formulations

Dassi, F
;
Russo, A
2020

Abstract

The methodological background of the virtual element method is presented and applied to model permanent magnets via the Kikuchi formulation, considering both linear and non-linear magnetic permeability of the ferromagnetic regions. The authors examine several study cases: a permanent magnet in free space, a permanent magnet energising a ferromagnetic core, a four-pole permanent-magnet motor. In order to validate the proposed approach, comparisons with both virtual and finite element potential formulations are presented and discussed.
Articolo in rivista - Articolo scientifico
Maxwell Equations, Virtual Element Method
English
20-dic-2020
2020
14
10
1098
1104
open
Dassi, F., Di Barba, P., Russo, A. (2020). Virtual element method and permanent magnet simulations: potential and mixed formulations. IET SCIENCE, MEASUREMENT & TECHNOLOGY, 14(10), 1098-1104 [10.1049/iet-smt.2020.0322].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/310205
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