A Lagrangian approach for solving an axisymmetric thermo-electromagnetic problem. Application to time-varying geometry processes

Author:

Benítez Marta,Bermúdez Alfredo,Fontán Pedro,Martínez Iván,Salgado Pilar

Abstract

AbstractThe aim of this work is to introduce a thermo-electromagnetic model for calculating the temperature and the power dissipated in cylindrical pieces whose geometry varies with time and undergoes large deformations; the motion will be a known data. The work will be a first step towards building a complete thermo-electromagnetic-mechanical model suitable for simulating electrically assisted forming processes, which is the main motivation of the work. The electromagnetic model will be obtained from the time-harmonic eddy current problem with an in-plane current; the source will be given in terms of currents or voltages defined at some parts of the boundary. Finite element methods based on a Lagrangian weak formulation will be used for the numerical solution. This approach will avoid the need to compute and remesh the thermo-electromagnetic domain along the time. The numerical tools will be implemented in FEniCS and validated by using a suitable test also solved in Eulerian coordinates.

Funder

Xunta de Galicia

Spanish National Plan for Scientific and Technical Research and Innovation

Centro para el Desarrollo Tecnológico Industrial

Universidade de Santiago de Compostela

Publisher

Springer Science and Business Media LLC

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