Metafor

ULiege - Aerospace & Mechanical Engineering

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start [2014/09/23 08:20] – [LTAS-MN²L] bomanstart [2018/05/04 08:05] (current) boman
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 ====== metafor.ltas.ulg.ac.be ====== ====== metafor.ltas.ulg.ac.be ======
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 +**METAFOR** is an object-oriented Finite Element code for the simulation of solids submitted to large deformations.
  
-<note tip>Ce site est dédié à Metafor, logiciel de calcul non linéaire par la méthode des éléments finis, développé au service [[http://www.ltas-mnl.ulg.ac.be/|LTAS-MN²L]] de l'[[http://www.ulg.ac.be/|Université de Liège]]+**METAFOR** is developed by the [[team:start|Computational Mechanics]] laboratory of the department of [[http://www.am.uliege.be/|Aerospace and Mechanical Engineering]] at the [[https://www.uliege.be/|University of Liège]]. 
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-===== Metafor ===== +
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-|  [[commit:start|{{:iconsvn.png?100|Liste des commits SVN}}]]  |  [[doc:todo:start|{{:todo.jpg?100|Todo List}}]] |  [[doc:user:start|{{:icondoc.jpg?100|Doc "utilisateur"}}]]                                            [[demos|{{:screenshots.jpg?100|Screenshots}}]]                       | +
-|  [[doc:devel:start|{{:icondoc2.png?100|Doc "programmeur"}}]]  |  [[misc:start|{{:divers.jpg?100|Divers}}]]      |  [[https://groups.google.com/group/ltas-mnl/?hl=fr|{{:mailinglist.jpg?100|Mailing list Metafor}}]]    [[http://metafor.ltas.ulg.ac.be/flyspray/|{{:bugs.jpg?100|Bugs}}]]   | +
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-===== Autres Projets ===== +
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-|  [[fabulous:start|{{:fabulous-logo.png?100|Fabulous}}]] |  [[abrawal:start|{{:abrawal-logo.png?100|Abrawal}}]]  |  [[metalub:start|{{:lubri_logo_small.png?150|MetaLub}}]] +
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-===== LTAS-MN²L ===== +
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-|  [[team|{{:whoiswho.jpg?100|Who is who?}}]] |  [[meetings:start|{{:meetings.jpg?100|Réunions de service}}]]  |  [[http://www.ltas-mnl.ulg.ac.be/|{{:officiel.jpg?100|Site officiel LTAS-MN²L}}]]   | +
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 +Some of the features included in **METAFOR** are:
 +  * 2D/3D elements for large strains analysis (Selective Reduced Integration, Enhanced Assumed Strain, ...).
 +  * Implicit/explicit time integration (Chung Hulbert, Hilber-Hughes-Taylor, ...).
 +  * Thermomechanical coupling (staggered or fully coupled schemes).
 +  * Frictional contact between deformable bodies or CAD surfaces.   
 +  * Arbitrary Lagrangian Eulerian formalism.
 +  * Meshing and remeshing procedures.
 +  * Large set of constitutive laws (thermo-elasto-visco-plastic, damage, composites, ...).
 +  * Crack propagation (erosion method).
start.1411453256.txt.gz · Last modified: 2016/03/30 15:22 (external edit)

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