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Original Articles

CHEMICAL EFFECTS OF THE INCOMPLETE-OXIDATION PRODUCTS IN RESIDUAL GAS ON THE GASOLINE HCCI AUTO-IGNITION

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Pages 273-296 | Received 12 May 2013, Accepted 21 Oct 2013, Published online: 24 Feb 2014

REFERENCES

  • Anderlohr , J.M. , Piperel , A. , da Cruz , A.P. , Bounaceur , R. , Battin-Leclerc , F. , Dagaut , P. , and Montagne , X. 2009 . Influence of EGR compounds on the oxidation of an HCCI-diesel surrogate . Proc. Combust. Inst. , 32 , 2851 .
  • Chen , T. , Xie , H. , Li , L. , Yu , W. , Li , Z. , and Zhao , H. 2011 . Continuous load adjustment strategy of a gasoline HCCI-SI engine fully controlled by exhaust gas . SAE paper 2011-01-1408 .
  • Davidson , D.F. , Oehlschlaeger , M.A. , and Hanson , R.K. 2007 . Methyl concentration time-histories during iso-octane and n-heptane oxidation and pyrolysis . Proc. Combust. Inst. , 31 , 321 .
  • Eng , J.A. , Leppard , W.R. , Najt , P.M. , and Dryer , F.L. 1997 . The interaction between nitric oxide and hydrocarbon oxidation chemistry in a spark-ignition engine . SAE Paper 972889 .
  • Faravelli , T. , Frassoldati , A. , and Ranzi , E. 2003 . Kinetic modeling of the interactions between NO and hydrocarbons in the oxidation of hydrocarbons at low temperatures . Combust. Flame , 132 , 188 .
  • Heywood , J.B. 1988. Internal Combustion Engine Fundamentals , McGraw-Hill , New York , Chap. 12, pp. 678–680.
  • Koopmans , L. , and Denbratt , I. 2001 . A four stroke camless engine, operated in homogeneous charge compression ignition mode with commercial gasoline . SAE paper 2001-01-3610 .
  • Kukkadapu , G. , Kumar , K. , Sung , C.J. , Mehl , M. , and Pitz , W.J. 2012 . Experimental and surrogate modeling study of gasoline ignition in a rapid compression machine . Combust. Flame , 159 , 3066 .
  • Kukkadapu , G. , Kumar , K. , Sung , C.J. , Mehl , M. , and Pitz , W.J. 2013 . Autoignition of gasoline and its surrogates in a rapid compression machine . Proc. Combust. Inst. , 34 , 345 .
  • Lavy , J. , Dabadie , J.C. , Angelberger , C. , and Duret , P. 2000 . Innovative ultra-low NOx controlled auto-ignition combustion process for gasoline engines: The 4-SPACE Project . SAE paper 2000-01-1837 .
  • Law , D. , Kemp , D. , Allen , J. , Kirkpatrick , G. , and Copland , T. 2001 . Controlled combustion in an IC-engine with a fully variable valve train . SAE paper 2001-01-0215 .
  • Li , J. , Zhao , Z. , Kazakov , A. , Chaos , M. , Dryer , F.L. , and Scire , J.J. 2007 . A comprehensive kinetic mechanism for CO, CH2O and CH3OH combustion . Int. J. Chem. Kinet. , 39 , 109 .
  • Li , J. , Zhao , H. , Ladommatos , N. , and Ma , T. 2001 . Research and development of controlled auto-ignition (CAI) combustion in a 4-stroke multi-cylinder gasoline engine . SAE paper 2001-01-3608 .
  • Machrafi , H. , Cavadia , S. , and Guibert , P. 2008 . An experimental and numerical investigation on the influence of external gas recirculation on the HCCI autoignition process in an engine: Thermal, diluting, and chemical effects . Combust. Flame , 155 , 476 .
  • Mehl , M. , Chen , J.Y. , Pitz , W.J. , Sarathy , S.M. , and Westbrook , C.K. 2011a . An approach for formulating surrogates for gasoline with application toward a reduced surrogate mechanism for CFD engine modeling . Energy Fuels , 25 , 5215 .
  • Mehl , M. , Pitz , W.J. , Sarathy , S.M. , Yang , Y. , and Dec , J.E. 2012 . Detailed kinetic modeling of conventional gasoline at highly boosted conditions and the associated intermediate temperature heat release . SAE paper 2012-01-1109 .
  • Mehl , M. , Pitz , W.J. , Westbrook , C.K. , and Curran , H.J. 2011b . Kinetic modeling of gasoline surrogate components and mixtures under engine conditions . Proc. Combust. Inst. , 33 , 193 .
  • Morsy , M.H. 2007 . Ignition control of methane fueled homogeneous charge compression ignition engines using additives . Fuel , 86 , 533 .
  • Noorpoor , A.R. , Ghaffarpour , M. , Aghsaee , M. , and Hamedani , A. 2009 . Effects of fuel additives on ignition timing of methane fuelled HCCI engine . J. Energy Inst. , 82 , 37 .
  • Piperel , A. , Dagaut , P. , and Montagne , X. 2009 . Impact of acetaldehyde and NO addition on the 1-octene oxidation under simulated HCCI conditions . Proc. Combust. Inst. , 32 , 2861 .
  • Risberg , P. , Johansson , D. , Andrae , J. , Kalghatgi , G. , Björnbom , P. , and Ångström , H.E. 2006 . The influence of NO on the combustion phasing in an HCCI engine . SAE paper 2006-01-0416 .
  • Sjöberg , M. , Dec , J.E. , and Hwang , W. 2007 . Thermodynamic and chemical effects of EGR and its constituents on HCCI autoignition . SAE paper 2007-01-0207 .
  • Subramanian , G. , Da Cruz , A.P. , and Bounaceur , R. 2007 . Chemical impact of CO and H-2 addition on the auto-ignition delay of homogeneous n-heptane/air mixtures . Combust. Sci. Technol. , 179 , 1937 .
  • Sung , C.J. , and Huang , Y. 2001 . Effects of reformer gas addition on the laminar flame speeds and flammability limits of n-butane and iso-butane flames . Combust. Flame , 126 , 1699 .
  • Tanaka , S. , Ayala , F. , Keck , J.C. , and Heywood , J.B. 2003. Two-stage ignition in HCCI combustion and HCCI control by fuels and additives. Combust. Flame , 132, 219.
  • Xie , H. , Hou , S. , Qin , J. , Zhang , Y. , Li , N. , and Zhao , H. 2006 . Control strategies for steady and transient operation of a 4-stroke gasoline engine with CAI combustion using a 4-variable valve actuating system (4VVAS) . SAE paper 2006-01-1083 .
  • Zhao , H. , Peng , Z. , Williams , J. , and Ladommatos , N. 2001 . Understanding the effects of recycled burnt gases on the controlled autoignition (CAI) combustion in four-stroke gasoline engines . SAE paper 2001-01-3607 .
  • Color versions of one or more of the figures in the article can be found online at www.tandfonline.com/gcst.

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