Abstract
Specific features of an algorithm for numerical solution of three-dimensional space magnetostatics problems with regard to geometric complexity of electromagnetic systems and nonlinear character of equations describing the magnetic field, are considered. Using the universal software developed on its base a number of calculations for electromagnetic systems differing in their functional purposes, was performed. To ground the accuracy the comparison of numerical calculation results to the magnetic measurement data and the results obtained using other methods, is realized. 23 refs.; 7 figs.
Citation Formats
Dojnikov, N I, Lamzin, E A, and Sychevskij, S E.
Numerical simulation of three-dimensional magnetostatic fields in electrophysical devices; Chislennoe modelirovanie trekhmernykh magnitostaticheskikh polej v ehlektrofizicheskikh ustrojstvakh.
USSR: N. p.,
1989.
Web.
Dojnikov, N I, Lamzin, E A, & Sychevskij, S E.
Numerical simulation of three-dimensional magnetostatic fields in electrophysical devices; Chislennoe modelirovanie trekhmernykh magnitostaticheskikh polej v ehlektrofizicheskikh ustrojstvakh.
USSR.
Dojnikov, N I, Lamzin, E A, and Sychevskij, S E.
1989.
"Numerical simulation of three-dimensional magnetostatic fields in electrophysical devices; Chislennoe modelirovanie trekhmernykh magnitostaticheskikh polej v ehlektrofizicheskikh ustrojstvakh."
USSR.
@misc{etde_10128237,
title = {Numerical simulation of three-dimensional magnetostatic fields in electrophysical devices; Chislennoe modelirovanie trekhmernykh magnitostaticheskikh polej v ehlektrofizicheskikh ustrojstvakh}
author = {Dojnikov, N I, Lamzin, E A, and Sychevskij, S E}
abstractNote = {Specific features of an algorithm for numerical solution of three-dimensional space magnetostatics problems with regard to geometric complexity of electromagnetic systems and nonlinear character of equations describing the magnetic field, are considered. Using the universal software developed on its base a number of calculations for electromagnetic systems differing in their functional purposes, was performed. To ground the accuracy the comparison of numerical calculation results to the magnetic measurement data and the results obtained using other methods, is realized. 23 refs.; 7 figs.}
place = {USSR}
year = {1989}
month = {Dec}
}
title = {Numerical simulation of three-dimensional magnetostatic fields in electrophysical devices; Chislennoe modelirovanie trekhmernykh magnitostaticheskikh polej v ehlektrofizicheskikh ustrojstvakh}
author = {Dojnikov, N I, Lamzin, E A, and Sychevskij, S E}
abstractNote = {Specific features of an algorithm for numerical solution of three-dimensional space magnetostatics problems with regard to geometric complexity of electromagnetic systems and nonlinear character of equations describing the magnetic field, are considered. Using the universal software developed on its base a number of calculations for electromagnetic systems differing in their functional purposes, was performed. To ground the accuracy the comparison of numerical calculation results to the magnetic measurement data and the results obtained using other methods, is realized. 23 refs.; 7 figs.}
place = {USSR}
year = {1989}
month = {Dec}
}