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A visual study on flame behavior in tone-excited non-premixed jet flames
Authors:Kee Man LeeTae Kwon Kim  Won Jin KimSeung Gon Kim  Jeong Park  Sang In Keel
Affiliation:a Department of Mechanical Engineering, Provincial College of Damyang, 262 Hyanggyo-ri, Damyang-up, Damyang-gun, Chonnam-Province 517-800, South Korea
b School of Mechanical and Automotive Engineering, Keimyung University, 1000 Sindang-dong, Dalseo-gu, Daegu 704-701, South Korea
c School of Mechanical and Automotive Engineering, Sunchon National University, 315 Maegok-dong, Sunchon, Chonnam 540-742, South Korea
d Combustion & Environmental Eng. Group, Korea Institute of Machinery and Materials, P.O. Box 101, Yusang, Taejon 305-343, South Korea
Abstract:A visualization study on the effect of forcing amplitude in tone-excited jet diffusion flames has been conducted. Visualization techniques are employed using optical schemes, which are a light scattering photography. Flame stability curve is attained according to Reynolds number and forcing amplitude at a fuel tube resonant frequency. Flame behavior is globally grouped into two from attached flame to blown-out flame according to forcing amplitude; one sticks the tradition flame behavior which has been observed in general jet diffusion flames and the other shows a variety of flame modes such as the flame of a feeble forcing amplitude where traditionally well-organized vortex motion evolves, a fat flame, an elongated flame, and an in-burning flame. Particular attention is focused on an elongation flame, which is associated with a turnabout phenomenon of vortex motion, and on a reversal of the direction of vortex roll-up. It is found that the flame length with forcing amplitude is the direct outcome of the evolution process of the formed inner flow structure. Especially the negative part of the acoustic cycle under the influence of a strong positive pressure gradient causes the shapes of the fuel stem and fuel branch part and even the direction of vortex roll-up to dramatically change.
Keywords:Forcing amplitude   Flame stability curve   Vortex motion
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