About GetDP, Gmsh, ONELAB and post-processing options
How to develop simple models and to see examples of advanced models
About challenges for FE code and some methods to improve outcomes
How the future development of GetDP is going to shape
Specific examples and approaches will be covered:
Superconductivity (critical state model and various formulations)
Magnet design and optimisation, with ferromagnetic elements
Quench and thermal transient problems
How to couple various physics models
Key features of GetDP:
Free and Open-Source FEM solver capable of 1D, 2D and 3D simulations
Single or Multiphysics with various couplings
Flexibility to define application specific physics
Modern scripting langue allowing repeatable analysis
Graphical user interface provided via Gmsh, through ONELAB interface
Participants experience and preparation:
Basic knowledge of Finite Element Methods, and concepts of meshing, solving and post-processing
Basic knowledge of superconductivity and electromagnet design
(Optional) ONELAB bundle downloaded (https://onelab.info/). In the bundle, the model: models/Superconductors/helix.pro will be introduced during the workshop