DocumentCode :
67678
Title :
Theory of Anode Region of Short High-Current Vacuum Arc
Author :
Londer, Yakov I. ; Ulyanov, Konstantin N.
Author_Institution :
All-Russian Electrotechnical Institute named after V.I. Lenin (FGUP VEI), Moscow, Russia
Volume :
41
Issue :
8
fYear :
2013
fDate :
Aug. 2013
Firstpage :
2002
Lastpage :
2006
Abstract :
A model of the anode region of a high-current vacuum arc is developed, which explicitly takes into consideration the ratio of the drift velocity of the electrons in plasma v_{0} to their thermal velocity v_{T} as a parameter of the electron velocity distribution function in the anode sheath. A transcendental equation for determining the value of the negative anode drop (AD) as a function of ratio v_{0}/v_{T} is obtained. It is shown that, in contrast to the well-known Langmuir formula in a 1-D model of a collisionless sheath, the AD remains negative for any value of v_{0}/v_{T} relation. For small values of v_{0}/v_{T} \\ll 1 , the expression obtained asymptotically passes into the Langmuir formula. The dependence of the AD value on the current density is used as a boundary condition at the anode in solving the 2-D problems in the theory of short vacuum arc. In accordance with the Langmuir formula, a region with a positive AD is formed at the anode when the current density increases. The results of this paper show that the region with a positive AD is absent.
Keywords :
Anodes; Current density; Electric potential; Mathematical model; Vacuum arcs; Anode region of a vacuum arc; Langmuir formula; negative anode drop (AD); revised Langmuir formula;
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/TPS.2013.2244102
Filename :
6469247
Link To Document :
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