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Original Articles

Measurement of Flame Temperature and Adiabatic Burning Velocity of Methane/Air Mixtures

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Pages 327-344 | Received 08 Jun 1993, Accepted 27 Sep 1993, Published online: 27 Apr 2007

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Read on this site (26)

Anastasia D. Moroshkina, Alina A. Ponomareva, Vladimir V. Mislavskii, Evgeniy V. Sereshchenko, Vladimir V. Gubernov, Viatcheslav V. Bykov & Sergey S. Minaev. (2023) Determining the global activation energy of methane–air premixed flames. Combustion Theory and Modelling 27:7, pages 909-924.
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Vinod Kumar Yadav, Shriyansh Srivastava & Vinay Yadav. (2023) Two-dimensional analysis of tapered heat flux burner for measuring laminar burning velocity. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 45:4, pages 11098-11112.
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R. T. Perin, I. M. Machado, L. A. Quezada, C. S. Bresolin & F. M. Pereira. (2022) Experimental and numerical study of the laminar burning velocity of syngas in oxyfuel conditions. Combustion Science and Technology 0:0, pages 1-26.
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Matthew Emmett, Emmanuel Motheau, Weiqun Zhang, Michael Minion & John B. Bell. (2019) A fourth-order adaptive mesh refinement algorithm for the multicomponent, reacting compressible Navier–Stokes equations. Combustion Theory and Modelling 23:4, pages 592-625.
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Y. Ding, D. Durox, N. Darabiha & T. Schuller. (2019) Chemiluminescence of Burner-Stabilized Premixed Laminar Flames. Combustion Science and Technology 191:1, pages 18-42.
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Travis Sikes, M. Sam Mannan & Eric L. Petersen. (2018) An experimental study: laminar flame speed sensitivity from spherical flames in stoichiometric CH4–air mixtures. Combustion Science and Technology 190:9, pages 1594-1613.
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Z. Turkeli-Ramadan, R. N. Sharma & R. R. Raine. (2017) Experimental Study on Flat Flame Combustion for Ultra Micro Gas Turbine Applications. Combustion Science and Technology 189:8, pages 1307-1325.
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Vladimir A. Alekseev, Jenny D. Naucler, Moah Christensen, Elna J. K. Nilsson, Evgeniy N. Volkov, L. Philipus H. de Goey & Alexander A. Konnov. (2016) Experimental Uncertainties of the Heat Flux Method for Measuring Burning Velocities. Combustion Science and Technology 188:6, pages 853-894.
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Ji-Woong Park, Chang Bo Oh & Ook Joong Kim. (2013) Radiation Effects on the Flame Structure and Extinction Limit of Counterflow Methane Partially Premixed Flames Diluted with Water Vapor in the Air Stream. Combustion Science and Technology 185:9, pages 1306-1328.
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Mohammad Akram, Sergey Minaev & Sudarshan Kumar. (2013) Investigations on the Formation of Planar Flames in Mesoscale Divergent Channels and Prediction of Burning Velocity at High Temperatures. Combustion Science and Technology 185:4, pages 645-660.
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R. Sreenivasan, V. Raghavan & T. Sundararajan. (2012) An investigation of flame zones and burning velocities of laminar unconfined methane-oxygen premixed flames. Combustion Theory and Modelling 16:2, pages 199-219.
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Sergei Labuda, Maxime Karrer, Julien Sotton & Marc Bellenoue. (2011) Experimental Study of Single-Wall Flame Quenching at High Pressures. Combustion Science and Technology 183:5, pages 409-426.
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Z. Chen, M.P. Burke & Y. Ju. (2009) Effects of compression and stretch on the determination of laminar flame speeds using propagating spherical flames. Combustion Theory and Modelling 13:2, pages 343-364.
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A. A. KONNOV, I. V. DYAKOV & J. DE RUYCK. (2006) PROBE SAMPLING MEASUREMENTS OF NO IN CH4+O2+N2 FLAMES DOPED WITH NH3 . Combustion Science and Technology 178:6, pages 1143-1164.
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PAULF. HENSHAW, TINA D'ANDREA, KENNETHR. C. MANN & DAVIDS.-K. TING. (2005) PREMIXED AMMONIA-METHANE-AIR COMBUSTION. Combustion Science and Technology 177:11, pages 2151-2170.
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K.J. BOSSCHAART & L.P. H. GOEY. (2004) EXTENSION OF THE HEAT FLUX METHOD TO SUBATMOSPHERIC PRESSURES. Combustion Science and Technology 176:9, pages 1537-1564.
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I.V. DYAKOV, A. A. KONNOV, J. DE RUYCK, K. J. BOSSCHAART, E. C. M. BROCK & L. P. H. DE GOEY. (2001) MEASUREMENT OF ADIABATIC BURNING VELOCITY IN METHANE-OXYGEN-NITROGEN MIXTURES. Combustion Science and Technology 172:1, pages 81-96.
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A. A. KONNOV, I. V. DYAKOV & J. DE RUYCK. (2001) PROBE SAMPLING MEASUREMENTS AND MODELING OF NITRIC OXIDE FORMATION IN METHANE-AIR FLAMES. Combustion Science and Technology 169:1, pages 127-153.
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K. J. BOSSCHAART, M. VERSLUIS, R. KNIKKER, Th. H. VANDERMEER, K. R. A. M. SCHREEL, L. P. H. DE GOEY & A. A. VAN STEENHOVEN. (2001) THE HEAT FLUX METHOD FOR PRODUCING BURNER STABILIZED ADIABATIC FLAMES: AN EVALUATION WITH CARS THERMOMETRY. Combustion Science and Technology 169:1, pages 69-87.
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DEREK BRADLEY. (2000) Flame Propagation in a Tube: The Legacy of Henri Guenoche. Combustion Science and Technology 158:1, pages 15-33.
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R. EVERTSEN, R.L STOLK & J.J. TER MEULEN. (1999) Investigations of Cavity Ring Down Spectroscopy applied to the detection of CH in Atmospheric Flames. Combustion Science and Technology 149:1-6, pages 19-34.
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R. M. M. Mallens & L. P. H. De Goey. (1998) Flash-back of Laminar Premixed Methane/Air Flames on Slitand Tube Burners. Combustion Science and Technology 136:1-6, pages 41-54.
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R. M. M. Mallens, B. O. Loijenga, L. P. H. De Goey & P. J. M. Sonnemansb. (1997) Numerical and Experimental Study of Lean M-and V-Shaped Flames. Combustion Science and Technology 122:1-6, pages 331-344.
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R. M. M. MALLENS, H. C. de LANGE, C. H. J. van de VEN & L. P. H. de GOEY. (1995) MODELING OF CONFINED AND UNCONFINED LAMINAR PREMIXED FLAMES ON SLIT AND TUBE BURNERS. Combustion Science and Technology 107:4-6, pages 387-401.
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L. P. H. DE GOEY, L. M. T. SOMERS, W. M. M. L. BOSCH & R. M. M. MALLENS. (1995) Modeling of the Small Scale Structure of Flat Burner-Stabilized Flames. Combustion Science and Technology 104:4-6, pages 387-400.
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A. VAN MAAREN & L. P. H. DE GOEY. (1994) Stretch and The Adiabatic Burning Velocity of Methane- and Propane-Air Flames. Combustion Science and Technology 102:1-6, pages 309-314.
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