DocumentCode :
993854
Title :
Glow-to-Spark Transitions in a Plasma System for Ignition and Combustion Control
Author :
Korolev, Yury D. ; Frants, Oleg B. ; Landl, Nikolay V. ; Geyman, Vladimir G. ; Matveev, Igor B.
Author_Institution :
Russian Acad. of Sci., Tomsk
Volume :
35
Issue :
6
fYear :
2007
Firstpage :
1651
Lastpage :
1657
Abstract :
This paper deals with the investigation of a new regime in a plasma ignition and flame control system as applied to air-hydrocarbon mixtures. The system is based on the design of a classical high-current arc plasmatron. Compared with a thermal plasmatron mode, the average discharge current in the described device has been decreased to about 0.1 A. Although average power dissipated in the discharge does not exceed 200 W and average gas temperature at the plasmatron exit for typical regimes of the discharge operation in air is less than 500 K, the device demonstrates reliable ignition and flame stabilization in a wide range of equivalence ratios. Physical mechanism of ignition is associated with the nonsteady-state properties of discharge. At a low current level, the discharge burns in a kind of glow mode, and because of the glow-to-spark transitions, the high-current nanosecond pulses are superimposed on the glow plasma background. Then, the spark discharge initiates the combustion process, which is efficiently sustained in the glow plasma.
Keywords :
combustion; electric ignition; flames; glow discharges; sparks; air-hydrocarbon mixtures; combustion control; discharge current; flame control system; glow plasma; glow-to-spark transitions; high-current arc plasmatron; high-current nanosecond pulses; ignition control; plasma ignition; plasma system; power dissipation; Combustion; Control systems; Fires; Ignition; Mechanical factors; Plasma devices; Plasma properties; Plasma temperature; Sparks; Temperature distribution; Combustion stabilization; glow-to-spark transition; ignition; plasma torches;
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/TPS.2007.910133
Filename :
4392546
Link To Document :
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