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Plugins

BEASY GiD

BEASY Corrosion & CP software is the core module of the BEASY Cathodic Protection and Signature modelling tools which simulates the current flow in the electrolyte and the electrode kinetics on the metallic surfaces. The software enables corrosion engineers to quickly develop full 3D virtual prototypes of Cathodic Protection systems to predict the degree of […]

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ATILA

ATILA is a finite element software package for the analysis of 2D & 3D structures based on smart materials. ATILA’s comprehensive element library include formulations for the following materials: elastic, composite, piezoelectric, electrostrictive, magnetostrictive, shape-memory alloys, and fluids. ATILA’s applications include: sonars and sonar arrays, piezoelectric actuators, ultrasonic devices, piezoelectric motors, piezoelectric transformers, magnetostrictive transducers,

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Stampack

Stampack is the metal forming simulation software for many industrial applications such as ironing, necking, embossing, stretch-forming, forming of thick sheets, flex-forming, hydro-forming of multi chamber profiles, stretch-bending of profiles, etc. To get more information about Stampack, please visit the Men at Work website www.maw-cax.de/produkte/stampack-xpress.html, or send a mail to helpdesk@stampack.com

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Hobbies

Hobbies (Higher Order Basis Based Integral Equation Solver) is electromagnetic software based on the Method of Moments (MoM). It has been designed in a high-performance parallel way. To get more information about Hobbies, please visit hobbies-em.com

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ERMES

ERMES (Electric Regularized Maxwell Equations with Singularities) is a finite element (FEM) code in frequency domain. It is the C++ implementation of a FEM formulation based on the regularized Maxwell equations. It is able to calculate electromagnetic fields for several applications: microwave engineering, antenna design, eddy currents, electromagnetic metal forming. ERMES results have been collated

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Elmer

Elmer is an open-source computational tool for multi-physics problems. It has been developed in collaboration with Finnish universities, research laboratories and industry. Elmer includes physical models of fluid dynamics, structural mechanics, electromagnetics and heat transfer. These are described by partial differential equations which Elmer solves by the Finite Element Method (FEM). To get more information

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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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Iber

Iber is a two-dimensional mathematical model for simulating flows in rivers and estuaries promoted by the Centre for Hydrographic Studies of CEDEX in the framework of a cooperation agreement signed between the CEDEX and the Dirección General del Agua, and developed in collaboration with the Water Engineering and Environment, GEAM (University of A Coruña UDC),

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SciFEA

SciFEA is a super-operator finite element analysis system for elasticity, viscoelastic mechanics, structural mechanics, heat transfer, seapage, electromagnetic, fluid-solid coupling and nonlinear solid mechanics. To get more information about SciFEA, please visit www.supcompute.com, or send a mail to supcompute@sohu.com

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