Modules Research

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Getfem++

The Getfem++ project focuses on the development of a generic and efficient C++ library for finite element methods elementary computations. The goal is to provide a library allowing the computation of any elementary matrix (even for mixed finite element methods) on the largest class of methods and elements, and for arbitrary dimension (i.e. not only […]

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Tochnog

Free TOCHNOG professional offers a wide variety of geotechnical, civil and mechanical options; modern material laws including the most recent rate independent and viscous hypoplasticity models; stress, temperature and groundwater pressure analysis; lagrangian and eulerian mesh in space; quasi-static and dynamic calculations. Linux and Microsoft Windows. Parallel computations. Dedicated pre- and postprocessing interfaces. A full

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Impact

Impact is a Finite Element Code which is based on an Explicit Time stepping algorithm. These kind of codes are used to simulate dynamic phenomenons such as car crashes and similar, usually involving large deformations. For further information about Impact, please visit impact.sourceforge.net

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Educational finite element codes: MATfem

MAT-fem has been written thinking about the joint interaction of GiD with MATLAB. GiD allows manipulating geometries and discretizations, writing the file as MATLAB need it. Through MATLAB the calculation program is executed, without losing the MATLAB advantages. Finally GiD gathers the output data files for its graphical visualization and interpretation. This scheme allows understanding

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Emant

Emant is a set of calculation tools to solve electro-magnetic problems using the Finite Element Method. The current version can solve 2D magneto-static problems. The EVALUATION version is limited to 1,000 nodes. Manuals are in Spanish. To get more information about Emant, please visit www.cimne.com/emant, or contact mora@cimne.upc.edu

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Calsef

Calsef is a simulation code for analysis of solids and structures using the Finite Element Method. It analyses 2D and 3D solids, plates, 3D shells, axonometric solids and shells. The EVALUATION version is limited to 1.000 nodes. Manuals are in Spanish. To get more information about Calsef, please visit www.cimne.com/calsef, or contact marcipar@cimne.upc.edu or zarate@cimne.upc.edu

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Caltep

Caltep is a calculus program to solve the Poisson equation (Conduction heat problems) of 2D models. The EVALUATION version is limited to 1.000 nodes. Manuals are in Spanish. For further information about Caltep, please visit www.cimne.com/projects/caltep

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