MAGNETIC PROPERTIES OF MULTICOMPONENT HETEROGENEOUS MEDIA WITH A DOUBLY PERIODIC STRUCTURE

Heterogeneous media have a wide range of practical applications. Media with a doubly periodic structure (matrices of high-gradient magnetic separators, etc.) occupy an important place. Their study is usually based on experimental and approximate methods and is limited to simple two-phase systems. Th...

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Autores principales: S. T. Tolmachev, S. L. Bondarevskyi, A. V. Il'chenko
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UK
Publicado: National Technical University "Kharkiv Polytechnic Institute" 2020
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Acceso en línea:https://doaj.org/article/d54ea91d0f2e467f80c0ebb6bfd3f4cf
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spelling oai:doaj.org-article:d54ea91d0f2e467f80c0ebb6bfd3f4cf2021-12-02T18:10:09ZMAGNETIC PROPERTIES OF MULTICOMPONENT HETEROGENEOUS MEDIA WITH A DOUBLY PERIODIC STRUCTURE10.20998/2074-272X.2020.1.052074-272X2309-3404https://doaj.org/article/d54ea91d0f2e467f80c0ebb6bfd3f4cf2020-02-01T00:00:00Zhttp://eie.khpi.edu.ua/article/view/2074-272X.2020.1.05/196656https://doaj.org/toc/2074-272Xhttps://doaj.org/toc/2309-3404Heterogeneous media have a wide range of practical applications. Media with a doubly periodic structure (matrices of high-gradient magnetic separators, etc.) occupy an important place. Their study is usually based on experimental and approximate methods and is limited to simple two-phase systems. The development of universal and accurate methods of mathematical modelling of electrophysical processes in such environments is an urgent task. The aim of the paper is to develop a method for calculating local and effective parameters of a magnetostatic field with minimal restrictions on the number of phases, their geometry, concentration, and magnetic properties. Based on the theory of elliptic functions and secondary sources, an integral equation is formulated with respect to the magnetization vector of the elements of the main parallelogram of the periods. The calculated expressions for the complex potential, field strength, and components of the effective magnetic permeability tensor are obtained. The results of a series of computational experiments confirming the universality and effectiveness of the method are presented. As an example of a practical application, a detailed study of the field of the magnetic forces of the matrix is carried out: the lines of magnetic isodine and potential extraction areas for a complex version of the matrix are constructed. Within the framework of the developed method, the calculation of local and effective field characteristics is carried out by solving the field problem in the field of an arbitrary parallelogram of periods without specifying boundary conditions on its sides with a comprehensive consideration of significant interdependent factors. The practical value of the method is to create new opportunities for improving the technical characteristics of electrophysical devices for which the universality and accuracy of calculating local and effective field characteristics is decisive. An algorithm for optimizing the characteristics of the separator is proposed. S. T. TolmachevS. L. BondarevskyiA. V. Il'chenkoNational Technical University "Kharkiv Polytechnic Institute"articledoubly periodic heterogeneous mediumintegral equationmagnetization vectorstrength fieldhomogenization problemmagnetic permeability tensorpolygradient separationmatrixmagnetic forcesElectrical engineering. Electronics. Nuclear engineeringTK1-9971ENRUUKElectrical engineering & Electromechanics, Iss 1, Pp 29-38 (2020)
institution DOAJ
collection DOAJ
language EN
RU
UK
topic doubly periodic heterogeneous medium
integral equation
magnetization vector
strength field
homogenization problem
magnetic permeability tensor
polygradient separation
matrix
magnetic forces
Electrical engineering. Electronics. Nuclear engineering
TK1-9971
spellingShingle doubly periodic heterogeneous medium
integral equation
magnetization vector
strength field
homogenization problem
magnetic permeability tensor
polygradient separation
matrix
magnetic forces
Electrical engineering. Electronics. Nuclear engineering
TK1-9971
S. T. Tolmachev
S. L. Bondarevskyi
A. V. Il'chenko
MAGNETIC PROPERTIES OF MULTICOMPONENT HETEROGENEOUS MEDIA WITH A DOUBLY PERIODIC STRUCTURE
description Heterogeneous media have a wide range of practical applications. Media with a doubly periodic structure (matrices of high-gradient magnetic separators, etc.) occupy an important place. Their study is usually based on experimental and approximate methods and is limited to simple two-phase systems. The development of universal and accurate methods of mathematical modelling of electrophysical processes in such environments is an urgent task. The aim of the paper is to develop a method for calculating local and effective parameters of a magnetostatic field with minimal restrictions on the number of phases, their geometry, concentration, and magnetic properties. Based on the theory of elliptic functions and secondary sources, an integral equation is formulated with respect to the magnetization vector of the elements of the main parallelogram of the periods. The calculated expressions for the complex potential, field strength, and components of the effective magnetic permeability tensor are obtained. The results of a series of computational experiments confirming the universality and effectiveness of the method are presented. As an example of a practical application, a detailed study of the field of the magnetic forces of the matrix is carried out: the lines of magnetic isodine and potential extraction areas for a complex version of the matrix are constructed. Within the framework of the developed method, the calculation of local and effective field characteristics is carried out by solving the field problem in the field of an arbitrary parallelogram of periods without specifying boundary conditions on its sides with a comprehensive consideration of significant interdependent factors. The practical value of the method is to create new opportunities for improving the technical characteristics of electrophysical devices for which the universality and accuracy of calculating local and effective field characteristics is decisive. An algorithm for optimizing the characteristics of the separator is proposed.
format article
author S. T. Tolmachev
S. L. Bondarevskyi
A. V. Il'chenko
author_facet S. T. Tolmachev
S. L. Bondarevskyi
A. V. Il'chenko
author_sort S. T. Tolmachev
title MAGNETIC PROPERTIES OF MULTICOMPONENT HETEROGENEOUS MEDIA WITH A DOUBLY PERIODIC STRUCTURE
title_short MAGNETIC PROPERTIES OF MULTICOMPONENT HETEROGENEOUS MEDIA WITH A DOUBLY PERIODIC STRUCTURE
title_full MAGNETIC PROPERTIES OF MULTICOMPONENT HETEROGENEOUS MEDIA WITH A DOUBLY PERIODIC STRUCTURE
title_fullStr MAGNETIC PROPERTIES OF MULTICOMPONENT HETEROGENEOUS MEDIA WITH A DOUBLY PERIODIC STRUCTURE
title_full_unstemmed MAGNETIC PROPERTIES OF MULTICOMPONENT HETEROGENEOUS MEDIA WITH A DOUBLY PERIODIC STRUCTURE
title_sort magnetic properties of multicomponent heterogeneous media with a doubly periodic structure
publisher National Technical University "Kharkiv Polytechnic Institute"
publishDate 2020
url https://doaj.org/article/d54ea91d0f2e467f80c0ebb6bfd3f4cf
work_keys_str_mv AT sttolmachev magneticpropertiesofmulticomponentheterogeneousmediawithadoublyperiodicstructure
AT slbondarevskyi magneticpropertiesofmulticomponentheterogeneousmediawithadoublyperiodicstructure
AT avilchenko magneticpropertiesofmulticomponentheterogeneousmediawithadoublyperiodicstructure
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