DocumentCode :
41020
Title :
An Operator Splitting Finite Element Method for Eddy-Current Field Analysis in High-Speed Rotating Solid Conductors
Author :
Yanpu Zhao ; Ho, S.L. ; Fu, W.N.
Author_Institution :
Dept. of Electr. Eng., Hong Kong Polytech. Univ., Kowloon, China
Volume :
49
Issue :
7
fYear :
2013
fDate :
Jul-13
Firstpage :
3171
Lastpage :
3174
Abstract :
Standard Galerkin finite element method (SGFEM) cannot solve eddy-current problems with dominated motional terms accurately and effectively. A numerical method for analyzing eddy-current magnetic field in high-speed rotating solid conductors using operator splitting finite element method (OSFEM) is presented. An artificial example and a benchmark transient eddy-current field problem, the problems 30A and 30B in testing electromagnetic analysis methods (TEAM) workshop, are used to test the accuracy and performance of the method. It is demonstrated that the numerical solution using the proposed method is nonoscillatory even for convection dominated cases. Besides, the calculated torque values are more accurate using the proposed OSFEM when compared with those obtained using SGFEM. It is concluded that the OSFEM can solve eddy-current problems with high-speed rotating conductors efficiently and accurately.
Keywords :
Galerkin method; eddy currents; finite element analysis; machine testing; machine theory; rotors; OSFEM; SGFEM; TEAM workshop; benchmark transient eddy-current field problem; eddy-current field analysis; eddy-current magnetic field; high-speed rotating solid conductors; numerical method; operator splitting finite element method; standard Galerkin finite element method; testing electromagnetic analysis method workshop; Conferences; Equations; Finite element analysis; Mathematical model; Rotors; Solids; Torque; Eddy-current magnetic field; finite element; high-speed rotating; operator splitting; testing electromagnetic analysis methods (TEAM) workshop problem 30;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2013.2238512
Filename :
6559172
Link To Document :
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