DocumentCode :
1434954
Title :
Benchmarking of a flux compression generator code
Author :
Cash, M. Alex ; Cornette, James Brion ; Parkinson, E. Roland ; Jamison, Keith A. ; Fowler, C.M. ; Goettee, J.D.
Author_Institution :
Air Force Res. Lab., Eglin AFB, FL, USA
Volume :
28
Issue :
5
fYear :
2000
fDate :
10/1/2000 12:00:00 AM
Firstpage :
1434
Lastpage :
1439
Abstract :
Science Applications International Corporation and the Air Force Research Laboratory are continuing development of a graphical design/simulation code for explosive flux compression generators (FCGs). “FCGSCA” is written in FORTRAN and Visual Basic and targets the Windows O/S (Microsoft, Chicago, IL). Basic physics principles and well-known circuit analysis techniques simulate generator-to-load performance; furthermore, FCGSCA incorporates an armature/stator inductance model, a “flux-loss” model, and a fairly detailed treatment of the stator winding resistance. FCGSCA includes a capability for modeling transformer coupling and fuze switching as part of various load configurations; additionally, the user can view overlays of time-history plots from one- or two-parameter variation studies. With reasonable costs in fidelity, this approximation permits quick system-level simulations that expedite FCG design and development. Herein, we primarily explain the ease-of-use of the FCGSCA interface and report on some benchmarking against the “Ranchito” generator that has been designed and tested by Los Alamos National Laboratory (LANL)
Keywords :
exploding wires; graphical user interfaces; inductance; power engineering computing; pulsed power supplies; stators; FCGSCA; FORTRAN; Visual Basic; Windows O/S; armature/stator inductance model; benchmarking; circuit analysis; explosive flux compression generators; flux compression generator code; flux-loss model; fuze switching; generator-to-load performance; graphical design/simulation code; graphical user interface; load configurations; modeling transformer coupling; physics principles; stator winding resistance; time-history plots; transformer coupling; Analytical models; Circuit analysis; Circuit simulation; Coupling circuits; Explosives; Inductance; Laboratories; Physics; Stator windings; Visual BASIC;
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/27.901210
Filename :
901210
Link To Document :
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