DocumentCode :
1142796
Title :
Loughborough 2-D simulation of MURI flux-compression generators
Author :
Novac, Bucur M. ; Smith, Ivor R.
Author_Institution :
Dept. of Electron. & Electr. Eng., Loughborough Univ., Leicestershire, UK
Volume :
30
Issue :
5
fYear :
2002
fDate :
10/1/2002 12:00:00 AM
Firstpage :
1654
Lastpage :
1658
Abstract :
A number of single-pitch minihelical flux-compression generators have been designed, manufactured and tested by Texas Tech University and the University of Missouri-Rolla, as part of a Multidisciplinary University Research Initiative (MURI). Several other Institutions have collaborated in the program, by providing theoretical predictions of the output performance of a generator without having access to the experimental data or making any consequent parameter changes in their numerical codes. As part of this activity, the Plasma and Pulsed Power Group at Loughborough University, Leicestershire, UK., has used its extensively documented and well-proven two-dimensional (2-D) filamentary modeling approach in conducting detailed theoretical considerations of the behavior of one of the generators. A number of fundamental features of the simulation are described in the paper, such as the inclusion of phase transition in the conductors and the effect of the very high electric field intensity in the contact point region. The ability of the code to provide accurate predictions of the actual generator performance for very-high-input currents is provided by the good agreement achieved with experimental results presented by TTU.
Keywords :
conductors (electric); digital simulation; electric fields; exploding wires; power engineering computing; pulse generators; pulsed power supplies; Loughborough 2-D simulation; Loughborough University; MURI flux-compression generators; Multidisciplinary University Research Initiative; Plasma and Pulsed Power Group; Texas Tech University; UK; University of Missouri-Rolla; conductors phase transition; contact point region; explosive generators; numerical codes; output performance; two-dimensional filamentary modeling; very high electric field intensity; very-high-input currents; Azimuthal current; Coaxial components; Coils; Conductors; Equations; Magnetic fields; Manufacturing; Research initiatives; Testing; Two dimensional displays;
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/TPS.2002.805394
Filename :
1178191
Link To Document :
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