DocumentCode :
1479744
Title :
Two simple models for analytical calculation of eddy currents in thin conducting plates
Author :
Siakavellas, Nicolaos J.
Author_Institution :
Dept. of Mech. Eng., Patras Univ., Greece
Volume :
33
Issue :
3
fYear :
1997
fDate :
5/1/1997 12:00:00 AM
Firstpage :
2245
Lastpage :
2257
Abstract :
Two simple models are proposed for the analytical calculation of eddy currents induced by a time-varying magnetic field in thin conducting plates of various shapes. In the first model, it is assumed that the current paths are determined exclusively by the shape of the plate. This assumption makes evident a shape factor that characterizes the shape of the plate under investigation and is independent of the dimensions of the plate. Thus, several important parameters, such as the equivalent resistance of the plate, the total circulating current, etc., are expressed analytically as a function of this shape factor. The application of the model makes possible the estimation of the total eddy current, circulating in plates of any shape, but the accuracy of this estimate is strongly affected by the shape of the plate. This model is then improved for plates having symmetrical shapes by taking into consideration the principle of minimum energy dissipation. The results, obtained by the improved model for the total circulating current, are in good agreement with the results obtained numerically as well as with analytical results obtained by the use of variational methods
Keywords :
eddy currents; modelling; conducting plate; eddy current; equivalent resistance; minimum energy dissipation; shape factor; time-varying magnetic field; total circulating current; Analytical models; Central Processing Unit; Eddy currents; Electromagnetic analysis; Electromagnetic fields; Magnetic analysis; Magnetic fields; Magnetic flux; Magnetic levitation; Shape;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/20.573839
Filename :
573839
Link To Document :
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