DocumentCode :
1965168
Title :
Hybrid Discretization Based on Finite Elements and Harmonic Functions for the Simulation of Technical Models Exhibiting Partial Symmetry
Author :
Koch, S. ; De Gersem, H. ; Weiland, T. ; Hoppe, J. ; Heinzig, P.
Author_Institution :
Inst. fur Theorie Elektromagnetischer Felder, Technische Univ. Darmstadt
fYear :
0
fDate :
0-0 0
Firstpage :
342
Lastpage :
342
Abstract :
Many technical devices such as transformers, electrical machines and particle accelerator magnets feature large differences in geometric dimensions. In that case, the construction of a 3D mesh for the overall geometry may fail or may give rise to unacceptably large numbers of elements. Even though a structure does not feature an overall symmetry, the symmetries of certain parts can be exploited by appropriate 2D models. The field distribution along the boundaries of those submodels does not remain symmetric but if it is expected to be smooth, the asymmetry of the fields is well approximated by a set of orthogonal functions along the third dimension. For the discretization of the remaining model parts standard finite elements (FEs) are used. By applying the proposed hybrid discretization, the number of unknowns in the numerical model is reduced significantly while maintaining a high accuracy
Keywords :
electric fields; finite element analysis; harmonic analysis; electrical machines; field distribution; finite elements; harmonic functions; hybrid discretization; partial symmetry; particle accelerator magnets; technical models; transformers; Differential equations; Eigenvalues and eigenfunctions; Finite element methods; Geometry; Linear particle accelerator; Power system modeling; Power transformers; Solid modeling; Sparse matrices; Symmetric matrices;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electromagnetic Field Computation, 2006 12th Biennial IEEE Conference on
Conference_Location :
Miami, FL
Print_ISBN :
1-4244-0320-0
Type :
conf
DOI :
10.1109/CEFC-06.2006.1633132
Filename :
1633132
Link To Document :
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