Some Aspects Regarding the Optimization of the Electromagnetic Field Propagation in Microwave Structures

The paper presents an optimizationprocedure for the distribution of the electromagneticfield in a microwave applicator used for the drying of adielectric. There are shown various applications ofnumerical modelling 3D, using the Method of theFinite Elements, for the study of the heating of somedielec...

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Main Authors: Paula Alexandra PALADE, Teodor LEUCA, Livia BANDICI
Format: Article
Language:English
Published: Editura Universităţii din Oradea 2009-10-01
Series:Journal of Electrical and Electronics Engineering
Subjects:
Online Access:http://electroinf.uoradea.ro/reviste%20CSCS/documente/JEEE_2009/Articole_pdf_JEEE_EE_nr_2/JEEE_2009_Nr_2_EE_Bandici_Some_Aspects.pdf
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spelling doaj-aecf4aa4b8b94143857ef1e1a808753e2020-11-24T21:08:37ZengEditura Universităţii din OradeaJournal of Electrical and Electronics Engineering1844-60352067-21282009-10-0122712Some Aspects Regarding the Optimization of the Electromagnetic Field Propagation in Microwave StructuresPaula Alexandra PALADETeodor LEUCALivia BANDICIThe paper presents an optimizationprocedure for the distribution of the electromagneticfield in a microwave applicator used for the drying of adielectric. There are shown various applications ofnumerical modelling 3D, using the Method of theFinite Elements, for the study of the heating of somedielectrics with losses, of parallelepiped shape, situatedin a multimode applicator, excited with energy througha wave guide. To determine the electromagnetic fieldwe used the Ansoft HFSS 10.1 programme. Thisprogramme uses the finite elements method and thenodal functions of the first order. The calculationdomain is divided into tetrahedral subdomains and thefield in each subdomain is properly defined by thevalues in the nodes of the tetrahedron. In this paper wepresent the optimization of the distribution of theelectromagnetic field from the following point of view:the placing mode of the wave guide on the applicator.The main problem which appears is represented by thehomogeneity of the field and implicitly of thetemperature in the material.http://electroinf.uoradea.ro/reviste%20CSCS/documente/JEEE_2009/Articole_pdf_JEEE_EE_nr_2/JEEE_2009_Nr_2_EE_Bandici_Some_Aspects.pdfelectromagnetic fieldoptimizationmicrowavedielectricnumerical modellingfinite elements method
collection DOAJ
language English
format Article
sources DOAJ
author Paula Alexandra PALADE
Teodor LEUCA
Livia BANDICI
spellingShingle Paula Alexandra PALADE
Teodor LEUCA
Livia BANDICI
Some Aspects Regarding the Optimization of the Electromagnetic Field Propagation in Microwave Structures
Journal of Electrical and Electronics Engineering
electromagnetic field
optimization
microwave
dielectric
numerical modelling
finite elements method
author_facet Paula Alexandra PALADE
Teodor LEUCA
Livia BANDICI
author_sort Paula Alexandra PALADE
title Some Aspects Regarding the Optimization of the Electromagnetic Field Propagation in Microwave Structures
title_short Some Aspects Regarding the Optimization of the Electromagnetic Field Propagation in Microwave Structures
title_full Some Aspects Regarding the Optimization of the Electromagnetic Field Propagation in Microwave Structures
title_fullStr Some Aspects Regarding the Optimization of the Electromagnetic Field Propagation in Microwave Structures
title_full_unstemmed Some Aspects Regarding the Optimization of the Electromagnetic Field Propagation in Microwave Structures
title_sort some aspects regarding the optimization of the electromagnetic field propagation in microwave structures
publisher Editura Universităţii din Oradea
series Journal of Electrical and Electronics Engineering
issn 1844-6035
2067-2128
publishDate 2009-10-01
description The paper presents an optimizationprocedure for the distribution of the electromagneticfield in a microwave applicator used for the drying of adielectric. There are shown various applications ofnumerical modelling 3D, using the Method of theFinite Elements, for the study of the heating of somedielectrics with losses, of parallelepiped shape, situatedin a multimode applicator, excited with energy througha wave guide. To determine the electromagnetic fieldwe used the Ansoft HFSS 10.1 programme. Thisprogramme uses the finite elements method and thenodal functions of the first order. The calculationdomain is divided into tetrahedral subdomains and thefield in each subdomain is properly defined by thevalues in the nodes of the tetrahedron. In this paper wepresent the optimization of the distribution of theelectromagnetic field from the following point of view:the placing mode of the wave guide on the applicator.The main problem which appears is represented by thehomogeneity of the field and implicitly of thetemperature in the material.
topic electromagnetic field
optimization
microwave
dielectric
numerical modelling
finite elements method
url http://electroinf.uoradea.ro/reviste%20CSCS/documente/JEEE_2009/Articole_pdf_JEEE_EE_nr_2/JEEE_2009_Nr_2_EE_Bandici_Some_Aspects.pdf
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AT teodorleuca someaspectsregardingtheoptimizationoftheelectromagneticfieldpropagationinmicrowavestructures
AT liviabandici someaspectsregardingtheoptimizationoftheelectromagneticfieldpropagationinmicrowavestructures
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