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Original Articles

Asymptotic Theory for Extinction of Curved Flames with Heat Loss

Pages 93-101 | Received 12 Oct 1979, Accepted 26 Jan 1980, Published online: 27 Apr 2007

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Zheng Chen, Xiaolong Gou & Yiguang Ju. (2010) Studies on the Outwardly and Inwardly Propagating Spherical Flames with Radiative Loss. Combustion Science and Technology 182:2, pages 124-142.
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M. T. MATTHEWS, B. Z. DLUGOGORSKI & E. M. KENNEDY. (2006) INFLUENCE OF UPSTREAM VERSUS DOWNSTREAM HEAT LOSSON THE STRUCTURE AND STABILITY OF PLANAR PREMIXED BURNER-STABILIZED FLAMES. Combustion Science and Technology 178:7, pages 1373-1410.
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T. H. LIN & S. H. SOHRAB. (1987) Influence of Vorticity on Counterflow Diffusion Flames. Combustion Science and Technology 52:1-3, pages 75-90.
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S. H. Sohrab & B. H. Chao. (1984) Influences of Upstream Versus Downstream Heat Loss/Gain on Stability of Premixed Flames. Combustion Science and Technology 38:5-6, pages 245-265.
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TOHRU MITANI. (1984) Stable Solution of Nonlinear Flame Shape Equation. Combustion Science and Technology 36:5-6, pages 235-247.
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WILLIAM T. ASHURST & P. K. BARR. (1983) Stochastic Calculation of Laminar Wrinkled Flame Propagation via Vortex Dynamics. Combustion Science and Technology 34:1-6, pages 227-256.
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G. JOULIN & G. I. SIVASHINSKY. (1983) On the Dynamics of Nearly-Extinguished Non-Adiabatic Cellular Flames. Combustion Science and Technology 31:1-2, pages 75-90.
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Andrés Z. Mendiburu, João A. CarvalhoJr.Jr. & Yiguang Ju. (2023) Flammability Limits: A Comprehensive Review of Theory, Experiments, and Estimation Methods. Energy & Fuels 37:6, pages 4151-4197.
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Masaya Nakahara, Fumiaki Abe, Kenichi Tokunaga & Atsushi Ishihara. (2015) Effect of dilution gas on burning velocity of hydrogen-premixed meso-scale spherical laminar flames. Proceedings of the Combustion Institute 35:1, pages 639-646.
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Masaya Nakahara, Fumiaki Abe, Kenichi Tokunaga & Atsushi Ishihara. (2013) Fundamental burning velocities of meso-scale propagating spherical flames with H2, CH4 and C3H8 mixtures. Proceedings of the Combustion Institute 34:1, pages 703-710.
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Joaquim Fort, Toni Pujol & A S Cukrowski. (2000) Several-temperature systems: extended irreversible thermodynamics and thermal wavefront propagation. Journal of Physics A: Mathematical and General 33:39, pages 6953-6973.
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Karlheinz Hoyermann. 2000. Handbuch des Explosionsschutzes. Handbuch des Explosionsschutzes 375 441 .
D.P. Mishra, P.J. Paul & H.S. Mukunda. (1994) Stretch effects extracted from inwardly and outwardly propagating spherical premixed flames. Combustion and Flame 97:1, pages 35-47.
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Merwin Sibulkin & Abdelkader Frendi. (1990) Prediction of flammability limit of an unconfined premixed gas in the absence of gravity. Combustion and Flame 82:3-4, pages 334-345.
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P D. Ronney & G I. Sivashinsky. (1989) A Theoretical Study of Propagation and Extinction of Nonsteady Spherical Flame Fronts. SIAM Journal on Applied Mathematics 49:4, pages 1029-1046.
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PAUL RONNEY. (1989) A study of the propagation, dynamics, and extinguishment of cellularflames using microgravity techniques. A study of the propagation, dynamics, and extinguishment of cellularflames using microgravity techniques.
C.K. Law. (1989) Dynamics of stretched flames. Symposium (International) on Combustion 22:1, pages 1381-1402.
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Muneo Izumikawa, Tohru Mitani & Takashi Niioka. (1988) Experimental study on cellular flame propagation of blend fuels. Combustion and Flame 73:2, pages 207-214.
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J.A. Britten & W.B. Krantz. (1986) Asymptotic structure of planar nonadiabatic reverse combustion fronts in porous media. Combustion and Flame 65:2, pages 151-161.
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Stefan Donnerhack & Norbert Peters. (2004) Die Flammenspitze einer Bunsen‐Flamme unter dem Einfluß von Krümmung und Streckung. Chemie Ingenieur Technik 54:8, pages 768-769.
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F.A. Williams. (1981) A review of flame extinction. Fire Safety Journal 3:3, pages 163-175.
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N. Peters. 1981. Modelling of Chemical Reaction Systems. Modelling of Chemical Reaction Systems 226 234 .
N. Peters & F. A. Williams. 1981. The Role of Coherent Structures in Modelling Turbulence and Mixing. The Role of Coherent Structures in Modelling Turbulence and Mixing 364 393 .

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