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Original Articles

Measurements of Scalar Dissipation in Turbulent Hydrogen Diffusion Flames and Some Implications on Combustion Modeling

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Pages 291-313 | Received 20 Nov 1996, Accepted 04 Mar 1997, Published online: 15 Sep 2010

References

  • Anselmet , F . and Antonia , R. A. ( 1985 ) Joint statistics between temperature and its dissipation in a turbulent jet . Phys. Fluids , 28 , 1048 – 1054 .
  • Antonia , R. A. , Satyaprakash , B. R. and Hussain , A. K. M. F. ( 1980 ) Measurements of dissipation rate and some other characteristics of turbulent plane and circular jets . Phys. Fluids , 23 , 695 – 700 .
  • Barlow , R. S. , Dibble , R. W. , Chen , J.-Y. and Lucht , R. P. ( 1990 ) Effect of Damkohler number on superequilibrium OH concentration in turbulent nonpremixed jet flames . Combust. Flame , 82 , 235 – 251 .
  • Barlow , R. S. and Carter , C. D , ( 1994 ) Raman/Rayleigh/LIF measurements of nitric oxide formation in turbulent hydrogen jet flames . Combust. Flame , 97 , 261 – 280 .
  • Bilger , R. W. ( 1980a ) Turbulent flows with nonpremixed reactant , In Libby , P. A. and Williams , F. A. (Eds.) Turbulent Reacting Flows , Springer-Verlag , N. Y , pp. 65 – 113 .
  • Bilger , R. W. ( 1980b ) Perturbation analysis of turbulent nonpremixed combustion . Combust Sci. Tech. , 22 , 251 – 261 .
  • Bilger , R. W. ( 1988 ) The structure of turbulent nonpremixed flames . Twenty-Second Symposium (International) on Combustion / The Combustion Institute , pp. 475 – 488 .
  • Bilger , R. W. , Yip , B. , Long , M. B. and Masri , A. R. ( 1990 ) An atlas of QEDR flame structures . Combust. Sci. Tech. , 72 , 137 – 155 .
  • Bilger , R. W. ( 1993 ) Conditional moment closure for turbulent reacting flow . Phys. Fluids A , 5 , 436 – 444 .
  • Brockhinke , A. , Andresen , P. and Kohse-Hoinghaus , K. ( 1996 ) Contribution to the analysis of temporal and spatial structures near the lift-off region of a turbulent hydrogen diffusion flame , accepted in Twenty-Sixty Symposium (International) on Combustion / The Combustion Institute , pp. 153 – 159 .
  • Chen , J.-Y. and Kollmann , W. ( 1992 ) PDF modeling and analysis of thermal NO formation in turbulent nonpremixed hydrogen-air jet flames . Combust. Flame , 88 , 397 – 412 .
  • Chen , Y.-C. and Mansour , M. S. ( 1996a) Measurements of the detailed flame structure in turbulent H2-Ar jet diffusion flames with line-Raman/Rayleigh/LIPF-OH technique , accepted in Twenty-Sixth Symposium (International) on Combustion / The Combustion Institute , pp. 97 – 103 .
  • Chen , Y.-C. and Mansour , M. S. ( 1996b ) Unpublished work .
  • Chen , Y.-C , Peters , N , Schneemann , A. , Wruch , R. , Renz , U. and Mansour , M. ( 1996 ). The Detailed Flame Structure of Highly Stretched Turbulent Premixed methane Flames . Combust. Flame , 107 , 223 – 244 .
  • Cheng , T. C , Fruechtel , G. , Neuber , A. , Lipp , F. , Hassel , E. P. and Janicka , J. ( 1996 ) Experimental data base for numerical simulations of turbulent diffusion flames . Forschung im Ingenieur-wesen , 61 , 165 – 171 .
  • Cheng , T. S. , Wehrmeyer , J. A. and Pitz , R. W. ( 1992 ) Simultaneous temperature and multi-species measurement in a lifted hydrogen diffusion flame . Combust. Flame , 91 , 323 – 345 .
  • Correa , S. M. , Drake , M. C , Pitz , R. W. and Shyy , W. ( 1984 ) prediction and measurement of a non-equilibrium turbulent diffusion flame . Twentieth Symposium (International) on Combustion / The Combustion Institute , pp. 337 – 343 .
  • Dibble , R. W. , Schefer , R. W. , Chen , J. Y. , Hartmann , V. and Kollmann , W. ( 1987 ) Velocity and density measurements in a turbulent nonpremixed flame with comparison to numerical model predictions . Sandia Report SAND 85 – 8233 .
  • Drake , M. C. ( 1986 ) Stretched laminar flamelet analysis of turbulent H2 and CO/H2/N2 diffusion flames . Twenty-First Symposium (International) on Combustion / The Combustion Institute , pp. 1579 – 1589 .
  • Drake , M. C , Pitz , R. W. and Lapp , M. ( 1986a ) laser measurements on nonpremixed H2-air flames for assessment of turbulent combustion models . AIAA J. , 24 , 905 – 917 .
  • Drake , M. C , Pitz , R. W. and Shyy , W. ( 1986b ) Conserved scalar probability density functions in a turbulent jet diffusion flame . J. Fluid Meek , 171 , 27 – 51 .
  • Driscoll , J. F. and Schefer , R. W. and Dibble , R. W. ( 1982 ) Mass fluxes pu a[ndot]d pV measured in a turbulent nonpremixed flame . Nineteeth Symposium (International) on Combustion / The Combustion Institute , pp. 477 – 485 .
  • Effelsberg , E. and Peters , N. ( 1988 ) Scalar dissipation rates in turbulent jets and jet diffusion flames . Twenty-Second Symposium (International) on Combustion / The Combustion Institute , pp. 693 – 700 .
  • Eswaran , V. and Pope , S. B. ( 1988 ) Direct numerical simulations of the turbulent mixing of a passive scalar . Phys. Fluids , 31 , 506 – 520 .
  • Ferreira , J. C , Gass , J. and Suter , P. ( 1996 ) Effects of turbulence on the local flame structure of non-premixed combustion, poster No. 2-087 presented in the Twenty-Sixth Symposium (International) on Combustion , Napoli , Italy .
  • Grünefeld , G. , Beushausen , V. , Andresen , P. and Hentschel , W. ( 1994 ) Spatially resolved Raman scattering for multi-species and temperature analysis in technically applied combustion systems: spray flame and four-cylinder in-line engine . Appl. Phys. B , 58 , 333 – 342 .
  • Howorth , D. C. , Drake , M. C , Pope , S. B. and Blint , R. J. ( 1988 ) The importance of time-dependent flame structures in stretched laminar flamelet models for turbulent jet diffusion flames . Twenty-Second Symposium(International) on Combustion/The Combustion Institute , pp. 589 – 597 .
  • Janicka , J. and Kollmann , W. ( 1978 ) A two-variables formalism for the treatment of chemical reactions in turbulent H2-air diffusion flames . Seventeenth Symposium (International) on Combustion/The Combustion Institute , pp. 421 – 430 .
  • Kailasnath , P. , Sreenivasan , K. R. and Saylor , J. R. ( 1993 ) Conditional scalar dissipation rates in turbulent wakes, jets, and boundary layers , Phys. Fluids A , 5 , 3207 – 3215 .
  • Klimenko , A. Yu. , Bilger , R. W. and Roomina , M. R. ( 1995 ) Some PDF Integrals for self-similar turbulent flows . Combust. Sci. Tech. , 107 , 403 – 410 .
  • Magre , M. and Dibble , R. W. ( 1988 ) Finite chemical kinetic effects in a subsonic turbulent hydrogen flame . Combust. Flame , 73 , 195 – 206 .
  • Mansour , M. S. , Peters , N. and Chen , Y.-C. ( 1996a ) Line Raman-Rayleigh-LIPF measurements in turbulent partially premixed flames of methane . Sixth International Congress of Fluid Dynamics and Propulsion , Joint conference of ASM E Int. and Cairo University , pp. 746 – 752 .
  • Mansour , M. S. , Chen , Y.-C. and Peters , N. ( 1996b ) Highly strained turbulent rich methane flames stabilized by hot combustion products . submitted to Combust. Flame .
  • Mansour , M. S. and Chen , Y.-C. ( 1996 ) Line Raman, Rayleigh, and laser-induced predissociation fluorescence technique for combustion with a tunable KrF excimer laser . Appl. Opt. , 35 , 4252 – 4260 .
  • Meier , W. , Prucker , S. , Cao , M.-H. and Strieker , W. ( 1996 ) Characterization of turbulent H2/N2/air jet diffusion flames by single-pulse spontaneous Raman scattering . Combust. Sci. Tech. , 118 , 293 – 312 .
  • Menon , S. , Calhoon , Jr. W. H. , Goldin , G. and Kerstein , A. R. ( 1994 ) Effects of molecular transport on turbulence-chemistry interactions in a hydrogen-argon-air jet diffusion flame . Twenty-Fifth Symposium )International) on Combustion/The Combustion Institute , pp. 1125 – 1131 .
  • Namazian , M. , Scheffer , R. W. and Kelly , J. ( 1988 ) Scalar dissipation measurements in the developing region of a jet . Combust. Flame , 74 , 147 – 160 .
  • Nandula , S. P. , Brown , Th. M. , Pitz , R. W. and DeBarber , P. A. ( 1994 ) Single-pulse, simultaneous multipoint multispecies Raman measurements in turbulent nonpremixed jet flames . Opt. Lett. , 19 , 414 – 416 .
  • Peters , N. ( 1984 ) Laminar diffusion flamelet models in non-equilibrium turbulent combustion. Prog . Energy Combust.Sci. , 10 , 319 – 339 .
  • Peters , N. ( 1991 ) Length scales in laminar and turbulent flames. In Oran , E. S. and Boris , J. P. , Numerical Approaches to Combustion Modeling , AIAA , Progress in Astronautics and Aeronautics Vol. 135 , Washington , DC , pp. 155 - 182 .
  • Reckers , W. , Hiiwel , L. , Griinefeld , G. and Andresen , P. ( 1993 ) Spatially resolved multispecies and temperature analysis in hydrogen flames . Appl. Opt. , 32 , 907 – 918 .
  • Roberts , W. L. , Driscoll , J. F. , Drake , M. C. and Goss , L. P. ( 1993 ) Images of the quenching of a flame by a vortex - to quantify regimes of turbulent combustion . Combust. Flame , 94 , 58 – 69 .
  • Shirley , J. A. ( 1990 ) UV Raman spectroscopy of H2-air flames excited with narrowband KrF laser . Appl. Phys. , B, 51 , 45 – 48 .
  • Smith , L. L. , Dibble , R. W. , Talbot , L. , Barlow , R. S. and Carter , C. D. ( 1995 ) Laser Raman scattering measurements of differential molecular diffusion in turbulent nonpremixed jet flames of H2/CO2 fuel . Combust. Flame , 100 , 153 – 160 .
  • Smith , N. S. A. , Bilger , R. W. and Chen , J.-Y. ( 1992 ) Modeling of nonpremixed hydrogen jet flames using a conditional moment closure method . Twenty-Fourth Symposium (International) on Combustion/The Combustion Institute , pp. 263 – 269 .
  • Stårner , S. H. , Bilger , R. W. , Dibble , R. W. and Barlow , R. S. ( 1990 ) Piloted diffusion flames of diluted methane near extinction: detailed structure from laser measurements . Combust. Sci. Tech. , 72 , 255 – 269 .
  • Stårner , S. H. , Bilger , R. W. , Lyons , K. M. , Frank , J. H. and Long , M. B. ( 1994 ) Conserved scalar measurements in turbulent diffusion flames by a Raman and Rayleigh ribbon imaging method . Combust. Flame , 99 , 347 – 354 .
  • Stårner , S. H. , Bilger , R. W. , Long , M. B. , Frank , J. H. and Marran , D.F. ( 1996 ) Scalar dissipation measurements in turbulent jet diffusion flames of air diluted methane and hydrogen, unpublished work.
  • Stepowski , D. and Cabot , G. ( 1992 ) Single-shot temperature and mixture fraction profiles by Rayleigh scattering in the development zone of a turbulent diffusion flame . Combust. Flame , 88 , 296 – 308 .

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