Combustion of Lean Flammable Mixtures in an Intense Radiation Field

A combustion process showing a slow temperature rise was realized in an intense radiation field by burning a lean combustible mixture in a cylindrical combustion chamber lined with a refractory in which a permeable plate was placed at the upstream and downstream ends, respectively. It was found by t...

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Published inNihon Kikai Gakkai rombunshuu. B hen Vol. 54; no. 506; pp. 2922 - 2928
Main Authors MIZUTANI, Yukio, YOSHIDA, Tomoki, ADACHI, Kazumi
Format Journal Article
LanguageEnglish
Japanese
Published The Japan Society of Mechanical Engineers 1988
Subjects
Online AccessGet full text
ISSN0387-5016
1884-8346
1884-8346
DOI10.1299/kikaib.54.2922

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Abstract A combustion process showing a slow temperature rise was realized in an intense radiation field by burning a lean combustible mixture in a cylindrical combustion chamber lined with a refractory in which a permeable plate was placed at the upstream and downstream ends, respectively. It was found by the measurement of the temperature and composition of gas along with the ion current and by high-speed schlieren photography, that a laminar flame was attached to the lower part of the red-hot refractory surface and that it spread towards the upper central portion, even if the mixture strength was below the lean flammable limit. The flame becomes convex toward the unburnt mixture due to some instability resulting in a kind of cellular structure. The flickering of the flame due to the wavy motion of the flame base and the cellular structure is the cause of the slow temperature rise.
AbstractList A combustion process showing a slow temperature rise was realized in an intense radiation field by burning a lean combustible mixture in a cylindrical combustion chamber lined with a refractory in which a permeable plate was placed at the upstream and downstream ends, respectively. It was found by the measurement of the temperature and composition of gas along with the ion current and by high-speed schlieren photography, that a laminar flame was attached to the lower part of the red-hot refractory surface and that it spread towards the upper central portion, even if the mixture strength was below the lean flammable limit. The flame becomes convex toward the unburnt mixture due to some instability resulting in a kind of cellular structure. The flickering of the flame due to the wavy motion of the flame base and the cellular structure is the cause of the slow temperature rise.
A combustion process showing a slow temperature rise was realized in an intense radiation field by burning a lean combustible mixture in a cylindrical combustion chamber lined with a refractory in which a permeable plate was placed at the upstream and downstream ends, respectively. It was found by the measurement of the temperature and composition of gas along with the ion current and by high-speed schlieren photography, that a laminar flame was attached to the lower part of the red-hot refractory surface and that it spread towards the upper central portion, even if the mixture strength was below the lean flammable limit.
Author MIZUTANI, Yukio
ADACHI, Kazumi
YOSHIDA, Tomoki
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(2) Arpaci, V.S. and Tabaczynsky, R.J., Combust. Flame, 57-2 (1984), 169.
(7) Echigo, R, et al., Proc. 1983 ASME-JSME Thermal Enging Conference, Vol. 4, (1983), 99.
(9) 水谷•ほか2名,機論,51-468B(昭60),2656.
(6) 水谷•徳田,機論151-471 B(昭60),3608.
(3) Jourin, G. and Deshaies, B., Combust. Sci. & Technol., 47-5/6 (1986), 299.
(4) Mizutani, Y. and Satomura, M., 19th Symposium (International) on Combustion, (1982). 529, The Combustion Institute.
(1) Sohrab, S.H. and Chao, B.H., Combust. Sci. & Technol., 38-5/6 (1984), 245.
(5) Mizutani, Y. and Matsumoto, T., Proc. 1983 Tokyo International Gas Turbine Congress, Vol. 1, (1984), 237, GTSJ.
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– reference: (4) Mizutani, Y. and Satomura, M., 19th Symposium (International) on Combustion, (1982). 529, The Combustion Institute.
– reference: (7) Echigo, R, et al., Proc. 1983 ASME-JSME Thermal Enging Conference, Vol. 4, (1983), 99.
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– reference: (1) Sohrab, S.H. and Chao, B.H., Combust. Sci. & Technol., 38-5/6 (1984), 245.
– reference: (2) Arpaci, V.S. and Tabaczynsky, R.J., Combust. Flame, 57-2 (1984), 169.
– reference: (9) 水谷•ほか2名,機論,51-468B(昭60),2656.
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SubjectTerms combustion
flames
mixing
Radiative Heat Recirculation-Type Furnace
Title Combustion of Lean Flammable Mixtures in an Intense Radiation Field
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