DocumentCode
1492884
Title
Improvement of Current Filament Method and Its Application in Performance Analysis of Induction Coil Gun
Author
Shoubao, Liu ; Jiangjun, Ruan ; Ying, Peng ; Yujiao, Zhang ; Yadong, Zhang
Author_Institution
Sch. of Electr. Eng., Wuhan Univ., Wuhan, China
Volume
39
Issue
1
fYear
2011
Firstpage
382
Lastpage
389
Abstract
The performance analysis of induction coil guns is very useful in their experimental research and electromagnetic optimization design. This study improves the current filament method (CFM), which is commonly used in a coil gun´s circuit simulation. In the improved CFM, each excitation coil was divided into small subcoils to improve the calculation precision of inductance in the equivalent electric network. In order to check the effect of the improvement and analyze the electromagnetic transient in coil-gun launch, the field-circuit method for induction coil guns was introduced. The field model is built based on the 3-D composite grid method (CGM). CGM uses two sets of mutual independent grids to discretize the solution region, the coarse grids discretize the global region, and the fine grids discretize the moving part. In every time step, instead of remeshing, it is only necessary to change the coordinates of nodes in fine grids. A three-stage coil gun´s field-circuit model is built, and the validity of modification is proved by comparing the results of field-circuit model before and after the improvement of CFM.
Keywords
electromagnetic induction; electromagnetic launchers; optimisation; 3D composite grid method; CGM; current filament method; electromagnetic optimization design; electromagnetic transient; equivalent electric network; excitation coil; inductance precision; induction coil gun launch; mutual independent grid; three stage coil gun field circuit model; Composite grid method (CGM); current filament method (CFM); field circuit; induction coil gun; moving-conductor eddy current (MCEC);
fLanguage
English
Journal_Title
Plasma Science, IEEE Transactions on
Publisher
ieee
ISSN
0093-3813
Type
jour
DOI
10.1109/TPS.2010.2047276
Filename
5466061
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