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Original Articles

Structures of CO Diffusion Flames Near Extinction

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Pages 181-200 | Received 13 Jun 1996, Accepted 31 Jan 1997, Published online: 27 Apr 2007

References

  • Balakrishnan , G. and Williams , F. A. ( 1994 ) Turbulent combustion regimes for hypersonic propulsion employing hydrogen-air diffusion flames. Journal of Propulsion and Power , 10 , 434 – 437 .
  • Baulch , D. L. , Cobos , C. J. , Cox , R. A , Esser , C , Frank , P. , Just , T. , Kerr , J. A. , Pilling , M. J. , Troe , J. , Walker , R. W. and Warnatz , J. ( 1992 ) Evaluated kinetic data for combustion modelling. Journal of Physical and Chemical Data , 21 , 411 – 736 .
  • Blackshear , P. L. (ed.) ( 1974 ) Heat Transfer in Fires: thermophysics, social aspects, economic impact , Scripta Book Company, New York .
  • Chelliah , H. K , Law , C. K , Ueda , T. , Smooke , M. D. and Williams , F. A. ( 1991) An experimental and theoretical investigation of the dilution, pressure and flow-field effects on the extinction condition of methane-air-nitrogen diffusion flames, Twenty-Third Symposium (International) on Combustion , The Combustion Institute, Pittsburgh , PA, pp. 503–511.
  • Chen , J. –Y, Dibble , R. W. and Bilger , W. R. ( 1990 ) PDF modeling of turbulent nonpremixed CO/H2/N2 jet flames with reduced mechanisms. Twenty-Third Symposium (International) on Combustion , The Combustion Institute, Pittsburgh , PA , pp. 775 – 780 .
  • Chen , J. –Y., Liu , Y. and Rogg , B. ( 1993 ) CO-H2-N2/air diffusion flames: Thermal radiation and transient effects. In N. Peters and B. Rogg eds. J.Reduced Kinetic Mechanisms for Applications in Combustion Systems , Springer-Verlag, Berlin , pp. 196 – 223 .
  • Cherian , M. A. , Rhodes , P. , Simpson , R. and Dixon–Lewis , G. ( 1981 a) Structure, chemical mechanism, and properties of premixed flames in mixtures of carbon monoxide, nitrogen and oxygen with hydrogen and water vapour. Phil. Trans. Roy. Soc. , London A , 303 , 181 – 212 .
  • Cherian , M. A. , Rhodes , P. , Simpson , R. J. and Dixon–Lewis , G. ( 1981 b) Kinetic modelling of the oxidation of carbon monoxide in flames. Eighteenth Symposium (International) on Combustion , The Combustion Institute, Pittsburgh , PA , pp. 385 – 396 .
  • Dixon–Lewis , G. ( 1995 ) Aspects of laminar premixed flame extinction limits. Twenty-Fifth Symposium (International) on Combustion , The Combustion Institute, Pittsburgh , PA , pp. 1325 – 1332 .
  • Dixon–Lewis , G. ( 1972 ) Flame structure and flame reaction kinetics VII. Reactions of traces of heavy water, deuterium and carbon dioxide added to rich hydrogen + nitrogen + oxygen flames. Proceedings of the Royal Society , of London A , 330 , 219 – 245 .
  • Drake , M. and Blint , R. J. ( 1989 ) Thermal NOx in stretch laminar opposed-flow diffusion flames with CO. Combustion and Flame , 76 , 151 – 167 .
  • Frenklach , M. , Bowman , T. , Smith , G. and Gardiner , B. ( 1994 ) GRI-Mech 1.2, Work-in-Progress Poster, Session 3, Number 26, 25th Symposium (International) on Combustion , Irvine, California Available via WWW, http://euler.berkeley.edu/gri-mech/data/rxn-table.html.
  • Frenklach , M. , Wang , H. and Rabinowitz , M. ( 1992 ) Optimization and analysis of large chemical kinetic mechanisms using the solution mapping method - combustion of methane. Progress in Energy and Combustion Science , 18 , 47 – 73 .
  • Hottel , H. C. and Sarofim , A. F. ( 1967 ) Radiative Transfer , McGraw-Hill, New York .
  • Hubbard , G. L. and Tien , C. L. ( 1978 ) Infrared mean absorption coefficients of luminous flame and smoke. Journal of Heat Transfer , 100 , 235 – 239 .
  • Ishizuka , S. and Tsuji , H. ( 1981 ) An experimental study of effect of inert gases on extinction of laminar diffusion flames. Eighteenth Symposium (International) on Combustion , The Combustion Institute, Pittsburgh , PA , pp. 213 – 221 .
  • Kilpatrick , S. D. (ed.) ( 1954 ) Heat Transmission, McGraw-Hill Series in Chemical Engineering, McGraw-Hill, New York .
  • Kim , J. S. and Williams , F. A. ( 1993 ) Structures of flow and mixture-fraction fields for counter-flow diffusion flames with small stoichiometric mixture fractions. Journal of SI AM on Applied Mathematics , 53 , 1551 – 1566 .
  • Kim , J. S. , Williams , F. A. and Ronney , P. D. ( 1995 ) Difiusional-thermal instability of diffusion flames. Submitted to Journal of Fluid Mechanics. ,
  • Linan , A. ( 1974 ) The asymptotic structure of counterflow diffusion flames for large activation energies. Acta Astronavtica , 1 , 1007 – 1039 .
  • Liu , Y. and Rogg , B. ( 1992 ) Modeling and computation of strained laminar diffusion flames with thermal radiation. In Kuhl, A. L., Leyer, J.–C, Borisov, A. and Sirigniano, W. A. (eds.), Dynamics of Gaseous Combustion, 151, Progress in Astronautics and Aeronautics series , American Institute of Aeronautics and Astronautics, Washington , DC , pp. 188 – 201 .
  • Masten , D. A. , Hanson , R. K. and Bowman , C. T. ( 1990 ) Shock tube study of the reaction H + O2 -OH + O using laser absorption. Journal of Physical Chemistry , 94 , 7119 – 7128 .
  • Miller , J. A. and Bowman , C. T. ( 1989 ) Mechanism and modeling of nitrogen chemistry in combustion , Progress in Energy and Combustion Science , 15 , 287 – 338 .
  • Penner , S. S. and Olfe , D. B. ( 1968 ) Radiation and Reentry, Reentry Physics Series , Academic Press, London .
  • Rightley , M. L. J. ( 1996 ) Numerical Analysis of Carbon Monoxide Flames by Reduced Kinetic and Asymptotic Methods. Ph.D thesis , University of California at San Diego .
  • Rightley , M. L. and Williams , F. A. ( 1995 ) Analytical approximations for structures of wet CO flames with one-step reduced chemistry. Combustion and Flame , 101 , 287 – 301 .
  • Rightley , M. L. and Williams , F. A. (1997) Burning velocities of CO flames. , To be published in Combustion and Flame.
  • Rogg , B. and Williams , F. A. ( 1988 ) Structures of wet CO flames with full and reduced kinetic mechanisms. Twenty-Second Symposium (International) on Combustion , The Combustion Institute, Pittsburgh , PA , pp. 1441 – 1415 .
  • Sato , J. ( 1991 ) Extinction of counterflow diffusion flame in high pressures. Combustion Science and Technology , 75 , 102 – 113 .
  • Smooke , M. D. ( 1991 ). Reduced Kinetic Mechanisms and Asymptotic Approximations for Methane-Air Flames , Springer-Verlag, New York , NY .
  • Sparrow , E. M. and Cess , R. D. ( 1970 ) Radiation Heat Transfer, Thermal Science Series , p:Brooks/Cole,| Belmont , CA , Chapter 7, pp. 201 – 222 .
  • Wang , W. and Rogg , B. ( 1993 ) Reduced kinetic mechanisms and their numerical treatment I: Wet CO flames. Combustion and Flame , 94 , 271 – 292 .
  • Wang , W. , Rogg , B. and Williams , F. ( 1993 ) Reduced kinetic mechanisms for wet CO flames. In N. Peters and B. Rogg (eds.), Reduced Kinetic Mechanisms for Applications in Combustion Systems , Springer-Verlag, :Berlin, pp. 44 – 57 .
  • Warhatz , J. ( 1979 ) Calculation of the structure of laminar flat flames. Ber. Bunsenges. Phys. Chem. , 83 , 960 – 957 .
  • Warnatz , J. ( 1984 ) Rate coefficients in the C/H/O system. In W. C. Gardiner (ed.), Combustion Chemistry , Springer-Verlag, Berlin , pp. 197 – 360 .
  • Williams , F. A. ( 1985 ) Combustion Theory, 2nd edition , Addison-Wesley, Menlo Park , CA , pp. 76 – 80 .
  • Yetter , R. A. , Dryer , F. L. and Rabitz , H. ( 1991 ) A comprehensive reaction mechanism for carbon monoxide hydrogen, Oxygen kinetics. Combustion Science and Technology , 79 , 97 – 128 .

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