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In this paper, an integrated, three-dimensional, finite element package for the analysis and design of power transformers is developed, requiring no prior user experience in numerical methods and magnetic field simulation.
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Our ambition, in this paper, is limited to a presentation of an introductory object-oriented finite element package for nonlinear analysis.
Implementation in the commercially available finite element package ABAQUS® for structural analysis is described.
A suitable piece of software is presented to connect Abaqus, a sophisticated finite element package, with Matlab, the most comprehensive program for mathematical analysis.
The commercial finite element package ANSYS was used to perform the numerical analysis using a three dimensional eight-noded layered structural solid elements.
Commercially available finite element package, MSC/NASTRAN has been used for numerical analysis.
The shape optimization program is implemented by a job control language and a reliable finite element package program, ANSYS, is used for structural analysis.
The commercial finite element package ANSYS version 5.3 was used for the solution of the problem.
The numerical analysis using the finite element package ABAQUS is conducted to model both the old and new girder.
The Karagozian & Case (K&C) cementitious material model, namely, MAT_Concrete_Damage_Rel3 (Mat_72R3), is implemented into finite element package LS-DYNA for UHPC.
Finally the model is implemented into a commercial finite element package and is applied to nonlinear structural analysis.
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