Исследование магнитного поля трехмерных ферромагнитных объектов

Methodology of numerical calculations of magnetic field and magnetic moment of ferromagnetic objects with complicated space form has been described with the help of the method of final volume and absorbing boundary conditions. Calculations of magnetic field and magnetic moment in the row of ferromag...

Full description

Saved in:
Bibliographic Details
Published in:Технічна електродинаміка
Date:2011
Main Authors: Резинкина, М.М., Лобжанидзе, Л.Э.
Format: Article
Language:Russian
Published: Інститут електродинаміки НАН України 2011
Subjects:
Online Access:https://nasplib.isofts.kiev.ua/handle/123456789/61937
Tags: Add Tag
No Tags, Be the first to tag this record!
Journal Title:Digital Library of Periodicals of National Academy of Sciences of Ukraine
Cite this:Исследование магнитного поля трехмерных ферромагнитных объектов / М.М. Резинкина, Л.Э. Лобжанидзе // Технічна електродинаміка. — 2011. — № 1. — С. 19-23. — Бібліогр.: 21 назв. — pос.

Institution

Digital Library of Periodicals of National Academy of Sciences of Ukraine
id nasplib_isofts_kiev_ua-123456789-61937
record_format dspace
spelling Резинкина, М.М.
Лобжанидзе, Л.Э.
2014-05-14T11:58:02Z
2014-05-14T11:58:02Z
2011
Исследование магнитного поля трехмерных ферромагнитных объектов / М.М. Резинкина, Л.Э. Лобжанидзе // Технічна електродинаміка. — 2011. — № 1. — С. 19-23. — Бібліогр.: 21 назв. — pос.
0204-3599
https://nasplib.isofts.kiev.ua/handle/123456789/61937
621.317.42
Methodology of numerical calculations of magnetic field and magnetic moment of ferromagnetic objects with complicated space form has been described with the help of the method of final volume and absorbing boundary conditions. Calculations of magnetic field and magnetic moment in the row of ferromagnetic objects have been performed with developed methodology. Dependence of magnetic moments of ferromagnetic constructions on their geometric shape has been analysed.
ru
Інститут електродинаміки НАН України
Технічна електродинаміка
Теоретична електротехніка та електрофізика
Исследование магнитного поля трехмерных ферромагнитных объектов
Analysis of magnetic field of three-dimensional ferrous objects
Article
published earlier
institution Digital Library of Periodicals of National Academy of Sciences of Ukraine
collection DSpace DC
title Исследование магнитного поля трехмерных ферромагнитных объектов
spellingShingle Исследование магнитного поля трехмерных ферромагнитных объектов
Резинкина, М.М.
Лобжанидзе, Л.Э.
Теоретична електротехніка та електрофізика
title_short Исследование магнитного поля трехмерных ферромагнитных объектов
title_full Исследование магнитного поля трехмерных ферромагнитных объектов
title_fullStr Исследование магнитного поля трехмерных ферромагнитных объектов
title_full_unstemmed Исследование магнитного поля трехмерных ферромагнитных объектов
title_sort исследование магнитного поля трехмерных ферромагнитных объектов
author Резинкина, М.М.
Лобжанидзе, Л.Э.
author_facet Резинкина, М.М.
Лобжанидзе, Л.Э.
topic Теоретична електротехніка та електрофізика
topic_facet Теоретична електротехніка та електрофізика
publishDate 2011
language Russian
container_title Технічна електродинаміка
publisher Інститут електродинаміки НАН України
format Article
title_alt Analysis of magnetic field of three-dimensional ferrous objects
description Methodology of numerical calculations of magnetic field and magnetic moment of ferromagnetic objects with complicated space form has been described with the help of the method of final volume and absorbing boundary conditions. Calculations of magnetic field and magnetic moment in the row of ferromagnetic objects have been performed with developed methodology. Dependence of magnetic moments of ferromagnetic constructions on their geometric shape has been analysed.
issn 0204-3599
url https://nasplib.isofts.kiev.ua/handle/123456789/61937
citation_txt Исследование магнитного поля трехмерных ферромагнитных объектов / М.М. Резинкина, Л.Э. Лобжанидзе // Технічна електродинаміка. — 2011. — № 1. — С. 19-23. — Бібліогр.: 21 назв. — pос.
work_keys_str_mv AT rezinkinamm issledovaniemagnitnogopolâtrehmernyhferromagnitnyhobʺektov
AT lobžanidzelé issledovaniemagnitnogopolâtrehmernyhferromagnitnyhobʺektov
AT rezinkinamm analysisofmagneticfieldofthreedimensionalferrousobjects
AT lobžanidzelé analysisofmagneticfieldofthreedimensionalferrousobjects
first_indexed 2025-11-24T21:03:24Z
last_indexed 2025-11-24T21:03:24Z
_version_ 1850497365813755904
fulltext ISSN 1607-7970. . . 2011. 1 19 621.317.42 1, , 2 1, 2 , . , 19, 72, , 61106, . . - . . .21, . 5. : , , , . . , ( ) [2,3,6,14,19 21]. - , , – 2 [10]. . - - , . - . - , ( , ), . , , [1] [15]. , , , , ( ) [9,4,13]. - ( ) – [4]. - , - . - . , [8,12,16,17]. - . , , . ( , ) - [4]. , - . - , , [5,11]. - , , , . - . , - , (i,j,k) - © ., ., 2011 20 ISSN 1607-7970. . . 2011. 1 . , . 1), . [5,11], V, . V - 0divB ( B – ) , , - S, - , 0n V S divB dv B ds , S – , ( . 1). - 0B H , 7 0 4 10 , , , 0i j k n S H ds , (1) , ,i j k – (i,j,k)- . (1) H grad , - , , (1) , , , , , , 0x i j k y i j k z i j k , (2) , , 1, , , , , , , , , , 1, , , ,( )x i j k i j k i j k i j k i j k i j k i j k i j kCX CX DX DX ; , , , 1, , , , , , , , , , 1, , ,( )y i j k i j k i j k i j k i j k i j k i j k i j kCY CY DY DY ; , , , , 1 , , , , , , , , , , 1 , ,( )z i j k i j k i j k i j k i j k i j k i j k i j kCZ CZ DZ DZ ; , , 1 1 1, 1, 1 1 1, 1, 1 1, , 1 1, , 1( ) /(4 )i j k j k i j k j k i j k j k i j k j k i j k iCX Y Z Y Z Y Z Y Z X ; , , 1 1 , 1, 1 1 , 1, 1 , , 1 , ,( ) /(4 )i j k j k i j k j k i j k j k i j k j k i j k iDX Y Z Y Z Y Z Y Z X ; , , 1 1 1, 1, 1 1 1, 1, 1 , 1, 1 , 1, 1( ) /(4 )i j k i k i j k i k i j k i k i j k i k i j k jCY X Z X Z X Z X Z Y ; , , 1 1 1, , 1 1 1, , 1 , , 1 , ,( ) /(4 );i j k i k i j k i k i j k i k i j k i k i j k jDY X Z X Z X Z X Z Y , , 1 1 1, 1, 1 1 , 1, 1 1 1, , 1 , , 1 1( ) /(4 );i j k i j i j k i j i j k i j i j k i j i j k kCZ X Y X Y X Y X Y Z , , 1 1 1, 1, 1 , 1, 1 1, , , ,( ) /(4 );i j k i j i j k i j i j k i j i j k i j i j k kDZ X Y X Y X Y X Y Z Xi, Yj, Zk – , y, z . ( , 0H ) 0H 0/ xx H , 0/ yy H , 0/ zz H , (3) 0xH , 0yH , 0zH – x, y, z 0H . , , , , - . « - » - , - . - , . , UPML (uniaxially perfectly matched layers – ) [18] , . 1 ISSN 1607-7970. . . 2011. 1 21 - [8]: x y z 0 0 0 0 0 0 . , x y, x= y; , - y z, y= z . , <1. - . [18], , , UPML d ( , x) - max( ) 1 ( 1) ( )m xk x k x d , kmax – kx UPML; m – . , m : 3 4m [19]. - ky(y) kz(z) . (3) , UPML, [7] max 0/ xx k H , max 0/ yy k H , max 0/ zz k H , 1 % [8]. UPML . 2, - H* = 100% (|H|-|H0|)/|H0|) z=0, : ) X Y Z: 0.16 0.3 0.08 3 ) X Y Z: 0.4 0.16 0.08 3 - =200, , X: H0 = Hx. . 2 1 , 2 – - . ( ) ( ) , 0.04 0.04 2 1 ( . 3 5 ) 1 . . , , 20 26 %, , , – 84 % [8]. . - . 1 %. - . . , . . 2, 22 ISSN 1607-7970. . . 2011. 1 1. . . – .: , 1986. – 216 . Krasnov I.P. Calculation methods for ship magnetism and electrical engineering. – Leningrad: Sudostroenie, 1986. – 216 p. (Rus.) 2. . / / ; 11 (1127) – : 1999. – 28 . Liubimov V.V. Artificial and natural electromagnetic fields in human environment and devices for its detection and fixation / Preprint / IZMIRAN; 11 (1127). – Troitsk: 1999. – 28 p. (Rus.) 3. ., ., ., . - « » // . – 1978. – 2. – . 74–76. Nakhilnitskaia Z.N., Mastriukova V.M, Andrianova L.A., Borodkina A.T. Reaction of organism to zero mag- netic field exposure // Kosmicheskaia biologiia i meditsina. – 1978. – 2. – P. 74–76. (Rus.) 4. . . – : , 1969. – 345 . Nesterenko A.D. Introduction to Theoretical Electrical Engineering. – Kiev: Naukova dumka, 1969. – 345 p. (Rus). 5. . . – .: - , 1984. – 150 . Patankar S. Numerical methods for solving heat transfer and fluid flow problems. – Moskva: Energoatomizdat, 1984. – 150 p. (Rus.) 6. . // 2- - . . « ». M.: 1999. – . 135–136. Pokhodzei L.V. Hypogeomagnetic conditions as a risk factor for human health // Trudy II Mezhdunar. konf. "Electromagnitnye polia i zdorovie cheloveka". – Moskva: 1999. – P. 135 136. (Rus.) 7. . // . – 2005. – .75. – 6. – . 85–92. Rezinkina M.M. Growth of dendrite branches in polyethylene insulation under a high voltage versus the branch conductivity // Zhurnal Tekhnicheskoi Fisiki. – 2005. – Vol.75. 6. – P. 85 92. (Rus.) 8. . // . – 2009. – .79. – 8. – . 8–17. A/m |He| Y m X m A/m |Hi| Y m X m . 5, A/m |He| Y m X m A/m |Hi| Y m X m . 4, A/m |He| Y m X m A/m |Hi| Y m X m . 3, ISSN 1607-7970. . . 2011. 1 23 Rezinkina M.M. Numerical calculation of the magnetic field and magnetic moment of ferromagnetic bodies with a complex spatial configuration // Zhurnal Tekhnicheskoi Fisiki. – 2009. – Vol.79. 8. – P. 8 17. (Rus). 9. . . – .: , 1989. – 504 . Tamm I.E. Fundamentals of electricity. – Moskva: Nauka, 1989. – 504 p. (Rus.) 10. - . – 2.2.4.1191-03 « ». – .: 2003. – 19 . Physical factors of the production environment Sanitary-epidemiological rules and norms. – SanPiN 2.2.4.1191-03 "Electromagnetic fields in production environment". – M.: 2003. – 19 p. (Rus.) 11. ., . - . – : , 2008. – 248 . Shcherba A.A., Rezinkina M.M. Modelling and analysis of electrical fields of power objects. – Kyiv: Naukova dumka, 2008. – 248 p. (Rus.) 12. ., . . – : , 2009. – 191 . Shcherba A.A., Rezinkina M.M. Electromagnetic fields and their influence on the objects. Kyiv: Naukova dumka, 2009. – 191 p. (Rus.) 13. . . – .– .: , 1941. – 283 . Yanovskii B.M. Terrestrial magnetism. Moskva–Leningrad: Glavsevmorputi, 1941. – 283 p. (Rus.) 14. Conley C.C. A review of the biological effects of very low magnetic fields // Report NASA TN D-5902. – National Aeronautics and Space Administration, Washington, D. C. 20546. – 1970. – 25 p. 15. Paluszek M., Thomas S., Mueller J., Bhatta P. Spacecraft attitude and orbit control. – Princeton: Princeton Satellite Systems, 2007. – 476 p. 16. Salinas E., Rezinkina M., Atalaya J. Some 2D–3D aspects of shielding of longitudinal sources of extremely low frequency magnetic fields // Environmentalist. – 2009. – Vol. 29. – 2. – P. 141–146. 17. Salinas E., Rezinkina M. Choice of parameters for passive shielding of power-frequency magnetic fields // Environmentalist. – 2009. – Vol. 29. – 2. – P. 135–140. 18. Taflove A., Hagness S. Computational electrodynamics: the finite difference time domain method. – Bos- ton-London: Artech House, 2000. – 852 p. 19. Xuebin W., Bing L.I., Muling X.U. et al. Long-term memory was impaired in one-trial passive avoidance task of day-old chicks hatching from hypomagnetic field space // China Sci. Bull. – 2003. – Vol. 48. – P. 2454–2457. 20. Zhang B., Lu H., Xi W. et al. Exposure to hypomagnetic field space for multiple generations causes amne- sia in Drosophila melanogaster // Neuroscience Letters. – 2004. – Vol. 371. – 2–3. – P. 190–195. 21. Zhang X., Li J-F., Wu Q-J., Li B., Jiang J-C. Effects of hypomagnetic field in noradrenergic activities in the brainstem of golden hamster // Bioelectromagnetics. – 2007. – Vol. 28. – P. 155–158. 621.317.42 1, , 2 1,2 , . , 19, 72, , 61106, . - . . - . . 21, . 5. : , , , . M.M.Rezynk na1, L.E.Lobzhanidze2 1, 2 Scientific and Technical Center of Magnetism of Technical Objects of National Academy of Science of Ukraine, Industrialna, 19, a/s 72, Kharkiv, 61106, Ukraine Analysis of magnetic field of three-dimensional ferrous objects Methodology of numerical calculations of magnetic field and magnetic moment of ferromagnetic objects with complicated space form has been described with the help of the method of final volume and absorbing boundary conditions. Calculations of magnetic field and magnetic moment in the row of ferromagnetic objects have been performed with developed methodology. Dependence of magnetic moments of ferromagnetic constructions on their geometric shape has been analysed. References 21, figures 5. Key words: magnetic field, ferromagnetic object, method of final volume, absorbing boundary conditions. 16.04.2010 Received 16.04.2010