DocumentCode :
23054
Title :
Fundamentals of Electrodynamic Technique of Numerical Designing of Helical High-Explosive Magnetic Generators
Author :
Pak, Semyon V. ; Babich, Leonid P. ; Ivanovskii, Andrei V.
Author_Institution :
Russian Fed. Nucl. Center, All-Russian Res. Inst. of Exp. Phys., Sarov, Russia
Volume :
43
Issue :
8
fYear :
2015
fDate :
Aug. 2015
Firstpage :
2743
Lastpage :
2753
Abstract :
Presented are the fundamentals of a consistently electrodynamic 2-D technique of designing helical explosive magnetic generators by numerical simulation on the basis of nonuniform equation for the vector potential with a priori set right-side term. The technique is demonstrated by solving a 1-D problem. A model 2-D problem a closed coil over a tube is analyzed. A coil current rupture is simulated. Concepts of vacuum inductance and free magnetic flux are discussed. Magnetic flux losses in the skin layer and free magnetic flux variation are calculated for an instant compression of an electric contour. A 2-D nonstationary problem a closed coil over a tube is solved. A critical mode of the generator operation is analyzed. A technique is described for solving a problem multiturn helix over a tube.
Keywords :
coils; electromagnetic devices; magnetic flux; numerical analysis; vectors; 1D problem; 2D nonstationary problem; coil current rupture; electric contour; electrodynamic 2D technique; free magnetic flux; helical high-explosive magnetic generators; magnetic flux losses; multiturn helix; nonuniform equation; skin layer; vacuum inductance; vector potential; Conductors; Current density; Electron tubes; Generators; Inductance; Mathematical model; Wires; Fully electrodynamic method; helical high-explosive magnetic generator (EMG); numerical simulation; vector potential; vector potential.;
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/TPS.2015.2443378
Filename :
7165649
Link To Document :
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