Yi. Lee et al., EXPERIMENTAL AND NUMERICAL STUDY ON THE LAMINAR PREMIXED FLAME STABILIZED INSIDE A HONEYCOMB CERAMIC, Combustion science and technology, 112, 1996, pp. 75
A laminar premixed flame stabilized inside a honeycomb ceramic was exp
erimentally as well as theoretically investigated here. In previous th
eoretical studies a stable flame has been predicted in the downstream
region of the combustor, but it has never been observed in experiments
. In this study, a stable downstream flame could be obtained for the l
ower burning velocity through circumferential heating by a blue flame
positioned outside the periphery of the specially devised combustor. T
he existence of the stable downstream flame was confirmed by a direct
photography of soot line, and temperature measurements. In this case t
he measured flame temperature was found to be lower than the adiabatic
flame temperature due to its lower heat release. The one-dimensional
flame analysis was also carried out by taking account of the side heat
ing resulting from the blue flame. The downstream as well as upstream
solution corresponding to upper and lower solutions could be obtained.
Once the net heat recirculation condition was satisfied for a given h
ow condition, the numerical procedure was stopped and the solution was
thought to be obtained. That is how both upstream and downstream flam
es could be found for a given mass how rate. However, in order for the
downstream flame to be stabilized, more heat needed to be recirculate
d towards upstream.