Title :
High-Speed Visualization of Flame Reaction Zone Using a Positive Point-to-Plane Corona Discharge
Author :
Wisman, David ; Ganguly, Biswa ; Marcum, S. Douglas
Author_Institution :
Aerosp. Power & Propulsion Div., UES Inc., Dayton, OH
Abstract :
We have used a pulsed corona discharge to obtain time-resolved spectrally filtered 337.1-nm N2(C rarr B) emission images for the visualization of the reaction zone (flame front) of a premixed propane-air flame. The low-density region at the flame front allows one to guide the streamer along the reaction zone during the initial stages of the pulsed discharge, while the temperature-dependent electron-detachment/attachment rate allows for the increased conductivity of the plasma after the discharge has been fully established. Images with 500-shot accumulations are presented to clearly illustrate the concept, while the ability for greater time resolution is discussed as an attractive means for imaging small-scale turbulent instabilities in a flame reaction zone.
Keywords :
chemically reactive flow; corona; flames; flow visualisation; plasma chemistry; plasma diagnostics; electron attachment rate; electron detachment rate; flame front; flame reaction zone; high-speed visualization; positive point-to-plane corona discharge; premixed propane-air flame; pulsed corona discharge; small-scale turbulent instabilities; time-resolved spectrally filtered emission images; Combustion; emission; high-speed flow visualization;
Journal_Title :
Plasma Science, IEEE Transactions on
DOI :
10.1109/TPS.2008.922430