This content is not included in your SAE MOBILUS subscription, or you are not logged in.

The Effect of Diluent Gases on High-Pressure Laminar Burning Velocity Measurements of an Advanced Biofuel Ketone

Journal Article
2018-01-0921
ISSN: 1946-3952, e-ISSN: 1946-3960
Published April 03, 2018 by SAE International in United States
The Effect of Diluent Gases on High-Pressure Laminar Burning Velocity Measurements of an Advanced Biofuel Ketone
Sector:
Citation: Almansour, B., Kim, G., and Vasu, S., "The Effect of Diluent Gases on High-Pressure Laminar Burning Velocity Measurements of an Advanced Biofuel Ketone," SAE Int. J. Fuels Lubr. 11(4):273-286, 2018, https://doi.org/10.4271/2018-01-0921.
Language: English

References

  1. Allen , J.W. , Scheer , A.M. , Gao , C.W. , Merchant , S.S. et al. A Coordinated Investigation of the Combustion Chemistry of Diisopropyl Ketone, a Prototype for Biofuels Produced by Endophytic Fungi Combust. Flame 161 711 724 2014
  2. Gladden , A. , Taatjes , C.A. , Gao , C. , Powell , A.J. et al. 2013
  3. Dec , J. and Yang , Y. Bio-Ketones: Autoignition Characteristics and Their Potential as Fuels for HCCI Engines SAE Int. J. Fuels Lubr. 6 3 713 728 2013 10.4271/2013-01-2627
  4. Barari , G. and Sarathy , S.M. Improved Combustion Kinetic Model and HCCI Engine Simulations of Di-Isopropyl Ketone Ignition Fuel 164 141 150 2016
  5. Barari , G. , Pryor , O. , Koroglu , B. , Sarathy , S.M. et al. High Temperature Shock Tube Experiments and Kinetic Modeling Study of Diisopropyl Ketone Ignition and Pyrolysis Combustion and Flame 177 207 218 2017
  6. Pryor , O. , Barari , G. , Koroglu , B. , Lopez , J. et al. Shock Tube Ignition Studies of Advanced Biofuels 52nd AIAA/SAE/ASEE Joint Propulsion Conference 2016 4691
  7. Almansour , B. , Alawadhi , S. , and Vasu , S. Laminar Burning Velocity Measurements in DIPK-An Advanced Biofuel SAE Int. J. Fuels Lubr. 10 2 432 441 2017 10.4271/2017-01-0863
  8. Hu , E. , Jiang , X. , Huang , Z. , and Iida , N. Numerical Study on the Effects of Diluents on the Laminar Burning Velocity of Methane-Air Mixtures Energy & Fuels 26 7 4242 4252 2012
  9. Galmiche , B. , Halter , F. , Foucher , F. , and Dagaut , P. Effects of Dilution on Laminar Burning Velocity of Premixed Methane/Air Flames Energy & Fuels 25 3 948 954 2011
  10. Zhu , D. , Egolfopoulos , F. , and Law , C. Experimental and Numerical Determination of Laminar Flame Speeds of Methane/(Ar, N 2 , CO 2 )-Air Mixtures as Function of Stoichiometry, Pressure, and Flame Temperature Symposium (International) on Combustion 22 1989 1537 1545
  11. Khan , A. , Anbusaravanan , S. , Kalathi , L. , Velamati , R. et al. Investigation of Dilution Effect with N 2 /CO 2 on Laminar Burning Velocity of Premixed Methane/Oxygen Mixtures Using Freely Expanding Spherical Flames Fuel 196 225 232 2017
  12. Rozenchan , G. , Zhu , D.L. , Law , C.K. , and Tse , S.D. Outward Propagation, Burning Velocities, and Chemical Effects of Methane Flames up to 60 atm Proc. Combust. Inst. 29 1461 1470 2002
  13. Eisazadeh-Far , K. , Moghaddas , A. , Metghalchi , H. , and Keck , J.C. The Effect of Diluent on Flame Structure and Laminar Burning Speeds of JP-8/Oxidizer/Diluent Premixed Flames Fuel 90 4 1476 1486 2011
  14. Smith , G.P. , Golden , D.M. , Frenklach , M. , Moriarty , N.W. et al. 1999
  15. Almansour , B. , Thompson , L. , Lopez , J. , Barari , G. et al. Laser Ignition and Flame Speed Measurements in Oxy-Methane Mixtures Diluted with CO 2 Journal of Energy Resources Technology 138 3 032201 2015 10.1115/1.4031967
  16. Garcia , D. Robust Smoothing of Gridded Data in One and Higher Dimensions with Missing Values Computational Statistics & Data Analysis 54 4 1167 1178 2010
  17. Metghalchi , M. 1976
  18. Egolfopoulos , F.N. , Hansen , N. , Ju , Y. , Kohse-Höinghaus , K. et al. Advances and Challenges in Laminar Flame Experiments and Implications for Combustion Chemistry Progress in Energy and Combustion Science 43 36 67 2014 10.1016/j.pecs.2014.04.004
  19. Lewis , B. and Von Elbe , G. Combustion, Flames and Explosions of Gases UK Elsevier 2012
  20. Saeed , K. and Stone , C. Measurements of the Laminar Burning Velocity for Mixtures of Methanol and Air from a Constant-Volume Vessel Using a Multizone Model Combustion and Flame 139 1 152 166 2004
  21. Goodwin , D.G. , Moffat , H.K. , and Speth , R.L. 2016
  22. O'Donovan , K. and Rallis , C.J. A Modified Analysis for the Determination of the Burning Velocity of a Gas Mixture in a Spherical Constant Volume Combustion Vessel Combustion and Flame 3 201 214 1959
  23. Bradley , D. and Mitcheson , A. Mathematical Solutions for Explosions in Spherical Vessels Combustion and Flame 26 0 201 217 1976 10.1016/0010-2180(76)90072-9
  24. Hill , P. and Hung , J. Laminar Burning Velocities of Stoichiometric Mixtures of Methane with Propane and Ethane Additives Combustion Science and Technology 60 1-3 7 30 1988 10.1080/00102208808923973
  25. Takizawa , K. , Takahashi , A. , Tokuhashi , K. , Kondo , S. et al. Burning Velocity Measurement of Fluorinated Compounds by the Spherical-Vessel Method Combustion and Flame 141 3 298 307 2005 10.1016/j.combustflame.2005.01.009
  26. Moghaddas , A. , Eisazadeh-Far , K. , and Metghalchi , H. Laminar Burning Speed Measurement of Premixed N-Decane/Air Mixtures Using Spherically Expanding Flames at High Temperatures and Pressures Combustion and Flame 159 4 1437 1443 2012 10.1016/j.combustflame.2011.12.005
  27. Eisazadeh-Far , K. , Moghaddas , A. , Al-Mulki , J. , and Metghalchi , H. Laminar Burning Speeds of Ethanol/Air/Diluent Mixtures Proceedings of the Combustion Institute 33 1 1021 1027 2011
  28. Rokni , E. , Moghaddas , A. , Askari , O. , and Metghalchi , H. Measurement of Laminar Burning Speeds and Investigation of Flame Stability of Acetylene (C2H2)/Air Mixtures Journal of Energy Resources Technology 137 1 012204 2015
  29. Chaos , M. , Kazakov , A. , Zhao , Z. , and Dryer , F.L. A High-Temperature Chemical Kinetic Model for Primary Reference Fuels International Journal of Chemical Kinetics 39 7 399 414 2007
  30. Law , C.K. Combustion Physics Cambridge University Press 2006
  31. Jomaas , G. , Law , C. , and Bechtold , J. On Transition to Cellularity in Expanding Spherical Flames Journal of fluid Mechanics 583 1 26 2007
  32. Kwon , O. , Rozenchan , G. , and Law , C. Cellular Instabilities and Self-Acceleration of Outwardly Propagating Spherical Flames Proceedings of the Combustion Institute 29 2 1775 1783 2002
  33. ANSYS Chemkin-Pro http://www.ansys.com/products/fluids/ansys-chemkin-pro 2017
  34. Turns , S.R. An Introduction to Combustion New York McGraw-Hill 1996
  35. Metghalchi , M. and Keck , J.C. Burning Velocities of Mixtures of Air with Methanol, Isooctane, and Indolene at High Pressure and Temperature Combustion and Flame 48 191 210 1982
  36. Farrell , J. 2016

Cited By