DocumentCode :
1375325
Title :
Three-Dimensional Numerical Simulation of the Joule Heating of Various Shapes of Armatures in Railguns
Author :
Shvetsov, Gennady A. ; Stankevich, Sergey V.
Author_Institution :
Lavrentyev Inst. of Hydrodynamics, Russian Acad. of Sci., Novosibirsk, Russia
Volume :
39
Issue :
1
fYear :
2011
Firstpage :
456
Lastpage :
460
Abstract :
This paper reports the results of 3-D numerical simulations of the Joule heating of armatures and rails in railguns. Armatures of various shapes with homogeneous and orthotropic electrical conductivity, homogeneous rails, and rails with a resistive coating are considered. It is shown that the maximum current density is reached at the perimeter of the rail-armature interface. The current-density value and, hence, the armature-heating dynamics are significantly affected by the armature shape and the electrothermal properties of the armature and rail materials, as well as by the acceleration dynamics, which, in turn, is determined by the total current value in the electromagnetic launcher and the total mass of the projectile. The ultimate projectile velocities are obtained when the Joule heating of the rails and armature by electric current during the shot does not tend to increase the temperature at any point of the railgun above its melting point. By controlling the structure and properties of rail materials, it is possible to reach ultimate (in terms of heating conditions) velocities much higher than those with homogeneous materials.
Keywords :
current density; electrical conductivity; numerical analysis; railguns; 3D numerical simulations; Joule heating; acceleration dynamics; armature shape; armature-heating dynamics; current density; electromagnetic launcher; electrothermal properties; homogeneous rails; orthotropic electrical conductivity; projectile velocity; rail-armature interface; railguns; resistive coating; three-dimensional numerical simulation; Acceleration; Copper; Heating; Materials; Railguns; Rails; Steel; Armature heating; current density; metal armature; numerical simulation; railgun; ultimate velocity;
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/TPS.2010.2087333
Filename :
5629443
Link To Document :
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