CONSTRUCTION OF AN ELECTRICAL GENERATOR USING THE FINITE ELEMENT ANALYSIS IN ELECTROMAGNETISM, ANSOFT MAXWELL

This paper attempts to present the necessary steps in designing a electrical generator represented in 2D, 3D, finite element analysis software of Ansoft Maxwell magnetic fields. This work includes modeling form of generator, boundaries, excitations, parameterization, the analysis of the mesh, optimi...

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Main Author: SAVULESCU Adrian
Format: Article
Language:English
Published: SORGING 2014-11-01
Series:Journal of Industrial Design and Engineering Graphics
Subjects:
Online Access:http://sorging.ro/jideg/index.php/jid/article/view/184
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author SAVULESCU Adrian
author_facet SAVULESCU Adrian
author_sort SAVULESCU Adrian
collection DOAJ
description This paper attempts to present the necessary steps in designing a electrical generator represented in 2D, 3D, finite element analysis software of Ansoft Maxwell magnetic fields. This work includes modeling form of generator, boundaries, excitations, parameterization, the analysis of the mesh, optimization, performance and representation fields: A (Flux Vector Lines and A), H (Mag_H and H Vector), B (Mag_B and B vector) J (Jz and J vector) and the energy and other analyzes as CoreLoss, Ohmic_Loss and Total_Loss.
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spelling doaj.art-5d4b33b2d0704e458dbd6770a90a83542023-09-02T14:41:33ZengSORGINGJournal of Industrial Design and Engineering Graphics1843-37662344-46812014-11-019CONSTRUCTION OF AN ELECTRICAL GENERATOR USING THE FINITE ELEMENT ANALYSIS IN ELECTROMAGNETISM, ANSOFT MAXWELLSAVULESCU Adrian0PhD. Student eng., “Dunarea de Jos” University of Galati, Romania, Faculty of Engineering in Braila, Research Centre for Mechanics of the Machines and Technological EquipmentsThis paper attempts to present the necessary steps in designing a electrical generator represented in 2D, 3D, finite element analysis software of Ansoft Maxwell magnetic fields. This work includes modeling form of generator, boundaries, excitations, parameterization, the analysis of the mesh, optimization, performance and representation fields: A (Flux Vector Lines and A), H (Mag_H and H Vector), B (Mag_B and B vector) J (Jz and J vector) and the energy and other analyzes as CoreLoss, Ohmic_Loss and Total_Loss.http://sorging.ro/jideg/index.php/jid/article/view/184Magnetic modeling, transient solution, Ansoft Maxwell, A.J and B fields, magnetic transient solution type.
spellingShingle SAVULESCU Adrian
CONSTRUCTION OF AN ELECTRICAL GENERATOR USING THE FINITE ELEMENT ANALYSIS IN ELECTROMAGNETISM, ANSOFT MAXWELL
Journal of Industrial Design and Engineering Graphics
Magnetic modeling, transient solution, Ansoft Maxwell, A.J and B fields, magnetic transient solution type.
title CONSTRUCTION OF AN ELECTRICAL GENERATOR USING THE FINITE ELEMENT ANALYSIS IN ELECTROMAGNETISM, ANSOFT MAXWELL
title_full CONSTRUCTION OF AN ELECTRICAL GENERATOR USING THE FINITE ELEMENT ANALYSIS IN ELECTROMAGNETISM, ANSOFT MAXWELL
title_fullStr CONSTRUCTION OF AN ELECTRICAL GENERATOR USING THE FINITE ELEMENT ANALYSIS IN ELECTROMAGNETISM, ANSOFT MAXWELL
title_full_unstemmed CONSTRUCTION OF AN ELECTRICAL GENERATOR USING THE FINITE ELEMENT ANALYSIS IN ELECTROMAGNETISM, ANSOFT MAXWELL
title_short CONSTRUCTION OF AN ELECTRICAL GENERATOR USING THE FINITE ELEMENT ANALYSIS IN ELECTROMAGNETISM, ANSOFT MAXWELL
title_sort construction of an electrical generator using the finite element analysis in electromagnetism ansoft maxwell
topic Magnetic modeling, transient solution, Ansoft Maxwell, A.J and B fields, magnetic transient solution type.
url http://sorging.ro/jideg/index.php/jid/article/view/184
work_keys_str_mv AT savulescuadrian constructionofanelectricalgeneratorusingthefiniteelementanalysisinelectromagnetismansoftmaxwell