FINITE VOLUME METHOD FOR SOLVING THREE-DIMENSIONAL ELECTRIC FIELD DISTRIBUTION

The paper examines a new approach to finite volume method which is used to calculate the electric field spatially homogeneous three-dimensional environment. It is formulated the problem Dirihle with building of the computational grid on base of space partition, which is known as Delone triangulation...

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Main Authors: Paţiuc V.I., Ribacova G., Berzan V.P.
Format: Article
Language:English
Published: Academy of Sciences of Moldova 2011-04-01
Series:Problems of the Regional Energetics
Subjects:
Online Access:http://journal.ie.asm.md/assets/files/m71_2_160.doc
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author Paţiuc V.I.
Ribacova G.
Berzan V.P.
author_facet Paţiuc V.I.
Ribacova G.
Berzan V.P.
author_sort Paţiuc V.I.
collection DOAJ
description The paper examines a new approach to finite volume method which is used to calculate the electric field spatially homogeneous three-dimensional environment. It is formulated the problem Dirihle with building of the computational grid on base of space partition, which is known as Delone triangulation with the use of Voronoi cells. It is proposed numerical algorithm for calculating the potential and electric field strength in the space formed by a cylinder placed in the air. It is developed algorithm and software which were for the case, when the potential on the inner surface of the cylinder has been assigned and on the outer surface and the bottom of cylinder it was assigned zero potential. There are presented results of calculations of distribution in the potential space and electric field strength.
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issn 1857-0070
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publishDate 2011-04-01
publisher Academy of Sciences of Moldova
record_format Article
series Problems of the Regional Energetics
spelling doaj-art-6d63b5564f1e43d6adb018a3ef6a90cb2025-08-02T10:29:46ZengAcademy of Sciences of MoldovaProblems of the Regional Energetics1857-00702011-04-012011-11(15)3141FINITE VOLUME METHOD FOR SOLVING THREE-DIMENSIONAL ELECTRIC FIELD DISTRIBUTIONPaţiuc V.I.0Ribacova G.1Berzan V.P.2Institute of Power Engineering of the Academy of Sciences of Moldova Chisinau, Republic of MoldovaInstitute of Power Engineering of the Academy of Sciences of Moldova Chisinau, Republic of MoldovaInstitute of Power Engineering of the Academy of Sciences of Moldova Chisinau, Republic of MoldovaThe paper examines a new approach to finite volume method which is used to calculate the electric field spatially homogeneous three-dimensional environment. It is formulated the problem Dirihle with building of the computational grid on base of space partition, which is known as Delone triangulation with the use of Voronoi cells. It is proposed numerical algorithm for calculating the potential and electric field strength in the space formed by a cylinder placed in the air. It is developed algorithm and software which were for the case, when the potential on the inner surface of the cylinder has been assigned and on the outer surface and the bottom of cylinder it was assigned zero potential. There are presented results of calculations of distribution in the potential space and electric field strength.http://journal.ie.asm.md/assets/files/m71_2_160.docelectric fieldaunhomogeneous medium
spellingShingle Paţiuc V.I.
Ribacova G.
Berzan V.P.
FINITE VOLUME METHOD FOR SOLVING THREE-DIMENSIONAL ELECTRIC FIELD DISTRIBUTION
Problems of the Regional Energetics
electric field
a
unhomogeneous medium
title FINITE VOLUME METHOD FOR SOLVING THREE-DIMENSIONAL ELECTRIC FIELD DISTRIBUTION
title_full FINITE VOLUME METHOD FOR SOLVING THREE-DIMENSIONAL ELECTRIC FIELD DISTRIBUTION
title_fullStr FINITE VOLUME METHOD FOR SOLVING THREE-DIMENSIONAL ELECTRIC FIELD DISTRIBUTION
title_full_unstemmed FINITE VOLUME METHOD FOR SOLVING THREE-DIMENSIONAL ELECTRIC FIELD DISTRIBUTION
title_short FINITE VOLUME METHOD FOR SOLVING THREE-DIMENSIONAL ELECTRIC FIELD DISTRIBUTION
title_sort finite volume method for solving three dimensional electric field distribution
topic electric field
a
unhomogeneous medium
url http://journal.ie.asm.md/assets/files/m71_2_160.doc
work_keys_str_mv AT patiucvi finitevolumemethodforsolvingthreedimensionalelectricfielddistribution
AT ribacovag finitevolumemethodforsolvingthreedimensionalelectricfielddistribution
AT berzanvp finitevolumemethodforsolvingthreedimensionalelectricfielddistribution