DocumentCode
1434865
Title
Accurate modeling of the proximity effect in helical flux-compression generators
Author
Novac, Bucur M. ; Smith, Ivor R. ; Enache, Mugurel C.
Author_Institution
Dept. of Electron. & Electr. Eng., Loughborough Univ. of Technol., UK
Volume
28
Issue
5
fYear
2000
fDate
10/1/2000 12:00:00 AM
Firstpage
1353
Lastpage
1355
Abstract
Two-dimensional (2-D) modeling techniques using a filamentary-mesh approach are very well established for use in helical flux-compression generator design and provide results that have been verified experimentally. However, none of the published numerical codes appear to describe adequately certain details involved in calculating the resistance of the helical stator coil. In particular, the skin and proximity effects that arise from diffusion of the magnetic field into the conductor are clearly three-dimensional (3-D) phenomena, and their influence is represented approximately by either existing formulae or a one-dimensional (1-D) description. In most published codes, the formulae that are used provide merely a steady-state approximation to the proximity effect. The present paper outlines a new detailed approach that has been developed for use with an existing 2-D model which forms the first element of an overall more detailed modeling code. It is shown that the scale of the proximity effects in a helical coil carrying a pulsed current can be many times greater than those predicted by the conventional formulae
Keywords
pulse generators; pulsed power supplies; accurate modeling; filamentary-mesh approach; helical coil; helical flux-compression generator design; helical flux-compression generators; helical stator coil; numerical codes; proximity effect; proximity effects; skin effects; steady-state approximation; three-dimensional phenomena; two-dimensional modeling techniques; Coaxial components; Coils; Conductors; Equations; Equivalent circuits; Magnetic fields; Numerical models; Proximity effect; Skin; Stators;
fLanguage
English
Journal_Title
Plasma Science, IEEE Transactions on
Publisher
ieee
ISSN
0093-3813
Type
jour
DOI
10.1109/27.901197
Filename
901197
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