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Original Articles

Predicted Nitric Oxide Emission from an Ethanol/Gasoline HCCI Engine

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Pages 160-179 | Received 27 Jan 2012, Accepted 17 Jul 2012, Published online: 16 Jan 2013

REFERENCES

  • Aceves , S.M. , Flowers , D.L. , Westbrook , C.K. , Smith , J.R. , and Pitz , W. 2000 . A multi-zone model for prediction of HCCI combustions and emissions. SAE Paper 2000-01-0327.
  • Aceves , S.M. , Smith , J.R. , Westbrook , C. , and Pitz , W.J. 1999 . Compression ratio effect on methane HCCI combustion . J. Eng. Gas Turbines Power , 121 , 569 .
  • Agarwal , A.K. 2007 . Biofuels (alcohols and biodiesel) applications as fuels for internal combustion engines . Prog. Energy Combust. Sci. , 33 , 233 .
  • Andrae , J.C.G. , Brinck , T. , and Kalghatgi , G.T. 2008 . HCCI experiments with toluene reference fuels modeled by a semidetailed chemical kinetic model . Combust. Flame , 155 , 696 .
  • Andrae , J.C.G. , and Head , R.A. 2009 . HCCI experiments with gasoline surrogate fuels modeled by a semidetailed chemical kinetic model . Combust. Flame , 156 , 842 .
  • Andrae , J. , Johansson , D. , Björnbom , P. , Risberg , P. , and Kalghatgi , G. 2005 . Co-oxidation in the auto-ignition of primary reference fuels and n-heptane/toluene blends . Combust. Flame , 140 , 267 .
  • Au , M.Y. , Girard , J.W. , Dibble , R. , Flowers , D. , Aceves , S.M. , Martinez-Frias , J. , Smith , R. , Seibel , C. , and Maas , U. 2001 . 1.9-Liter four-cylinder HCCI engine operation with exhaust gas recirculation. SAE Paper 2001-01-1894.
  • Battin-Leclerc , F. 2008 . Detailed chemical kinetic models for the low-temperature combustion of hydrocarbons with application to gasoline and diesel fuel surrogates . Prog. Energy Combust. Sci. , 34 , 440 .
  • Bhave , A. , Kraft , M. , Montorsi , L. , and Mauss , F. 2004 . Modelling a dual-fuelled multi-cylinder HCCI engine using a PDF based engine cycle simulator. SAE Paper 2004-01-0561.
  • Bieleveld , T. , Frassoldati , A. , Cuoci , A. , Faravelli , T. , Ranzi , E. , Niemann , U. , and Seshadri , K. 2009 . Experimental and kinetic modeling study of combustion of gasoline, its surrogates and components in laminar non-premixed flows . Proc. Combust. Inst. , 32 , 493 .
  • Broustail , G. , Seers , P. , Halter , F. , Moréac , G. , and Mounaïm-Rousselle , C. 2011 . Experimental determination of laminar burning velocity for butanol and ethanol iso-octane blends . Fuel , 90 , 1 .
  • Bui-Pham , M.N. , Lutz , A.E. , Miller , J.A. , Desjardin , M. , O'Shaughnessey , D.M. , and Zondlak , R.J. 1995. Rich flammability limits in CH3OH/CO/diluent mixtures. Combust. Sci. Technol. , 109, 71.
  • Cancino , L.R. , Fikri , M. , Oliveira , A.A.M. , and Schulz , C. 2009 . Autoignition of gasoline surrogate mixtures at intermediate temperatures and high pressures: Experimental and numerical approaches . Proc. Combust. Inst. , 32 , 501 .
  • Cancino , L.R. , Fikri , M. , Oliveira , A.A.M. , and Schulz , C. 2010 . Measurement and chemical kinetics modeling of shock-induced ignition of ethanol-air mixtures . Energy Fuels , 24 , 2830 .
  • Chakir , A. , Belliman , M. , Boettner , J.C. , and Cathonnet , M. 1992 . Kinetic study of n-heptane oxidation . Int. J. Chem. Kinet. , 24 , 385 .
  • Chaos , M. , Zhao , Z. , Kazakov , A. , Gokulakrishnan , P. , Angioletti , M. , and Dryer , F.L. 2007 . A PRF + toluene surrogate fuel model for simulating gasoline kinetics. Presented at the Fifth U.S. Combustion Meeting, March 25–28, San Diego, CA.
  • CHEMKIN-PRO . 2008 . Reaction Design, San Diego, CA.
  • Christensen , M. , Johansson , B. , Amneus , P. , and Mauss , F. 1998 . Supercharged HCCI engine. SAE Paper 980787.
  • Côme , G.M. , Warth , V. , Glaude , P.A. , Fournet , R. , Battin-Leclerc , F. , and Scacchi , G. 1996 . Computer-aided design of gas phase oxidation mechanisms – application to the modeling of n-heptane and iso-octane oxidation . Proc. Combust. Inst. , 26 , 755 .
  • Cuoci , A. , Frassoldati , A. , Faravelli , T. , and Ranzi , E. 2009 . Formation of soot and nitrogen oxides in unsteady counterflow diffusion flames . Combust. Flame , 156 , 2010 .
  • Curran , H.J. , Dunphy , M.P. , Simmie , J.M. , Westbrook , C.K. , and Pitz , W.J. 1992 . Shock tube ignition of ethanol, isobutene and MTBE: experiments and modeling . Proc. Combust. Inst. , 24 , 769 .
  • Curran , H.J. , Pitz , W.J. , Westbrook , C.K. , Callahan , C.V. , and Dryer , F.L. 1998 . Oxidation of automotive primary reference fuels at elevated pressures . Proc. Combust. Inst. , 27 , 379 .
  • Dagaut , P. , and Togbé , C. 2008 . Experimental and modeling study of the kinetics of oxidation of ethanol-gasoline surrogate mixtures (E85 surrogate) in a jet-stirred reactor . Energy Fuels , 22 , 3499 .
  • da Silva , G. , Bozzelli , J.W. , Liang , L. , and Farrell , J.T. 2009 . Ethanol oxidation: Kinetics of the α-hydroxyethyl radical + O2 reaction . J. Phys. Chem. A , 113 , 8923 .
  • Davis , S.G. , and Law , C.K. 1998 . Laminar flame speeds and oxidation kinetics of iso-octane-air and n-heptane-air flames . Proc. Combust. Inst. , 27 , 521 .
  • Dryer , F.L. , and Brezinsky , K.A. 1986 . A flow reactor study of the oxidation of n-octane and iso-octane . Combust. Sci. Technol. , 45 , 199 .
  • Dubreuil , A. , Foucher , F. , Mounaïm-Rousselle , C. , Dayma , G. , and Dagaut , P. 2007 . HCCI combustion: Effect of NO in EGR . Proc. Combust. Inst. , 31 , 2879 .
  • Easley , W.L. , Agarwal , A. , and Lavoie , G.A. 2001 . Modeling of HCCI combustion and emissions using detailed chemistry. SAE Paper 2001-01-1029.
  • Egolfopoulos , F.N. , Du , D.X. , and Law , C.K. 1992 . A study on ethanol oxidation kinetics in laminar premixed flames, flow reactors, and shock tubes . Proc. Combust. Inst. , 24 , 833 .
  • Faravelli , T. , Frassoldati , A.O. , 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 .
  • Frassoldati , A. , Cuoci , A. , Faravelli , T. , and Ranzi , E. 2010 . Kinetic modeling of the oxidation of ethanol and gasoline surrogate mixtures . Combust. Sci. Technol. , 182 , 653 .
  • Frassoldati , A. , Faravelli , T. , and Ranzi , E. 2003 . Kinetic modeling of the interactions between NO and hydrocarbons at high temperature . Combust. Flame , 135 , 97 .
  • Gülder , Ö. 1982 . Laminar burning velocities of methanol, ethanol and isooctane-air mixtures . Proc. Combust. Inst. , 19 , 275 .
  • Hajireza , S. , Mauss , F. , and Sundén , B. 2000. Hot-spot autoignition in spark ignition engines. Proc. Combust. Inst. , 28, 1169.
  • Han , D. , Ickes , A.M. , Assanis , D.N. , Huang , Z. , and Bohac , S.V. 2010 . Attainment and load extension of high-efficiency premixed low-temperature combustion with dieseline in a compression ignition engine . Energy Fuels , 24 , 3517 .
  • Held , T.J. , Marchese , A.J. , and Dryer , F.L. 1997 . A semi-empirical reaction mechanism for n-heptane oxidation and pyrolysis . Combust. Sci. Technol. , 123 , 107 .
  • Heywood , J.B. 1988 . Internal Combustion Engines Fundamentals , McGraw-Hill Science/Engineering/Math , New York .
  • Huang , Y. , Sung , C.J. , and Eng , J.A. 2004a . Dilution limits of n-butane/air mixtures under conditions relevant to HCCI combustion . Combust. Flame , 136 , 457 .
  • Huang , Y. , Sung , C.J. , and Eng , J.A. 2004b . Laminar flame speeds of primary reference fuels and reformer gas mixtures . Combust. Flame , 139 , 239 .
  • Johansson , B. 2009 . Partially premixed combustion, PPC, for high fuel efficiency engine operation. Presented at the SAE Powertrain and Fluids Conference, November 2–4, San Antonio, TX.
  • Kalghatgi , G.T. , Hildingsson , L. , Harrison , A.J. , and Johansson , B. 2011 . Autoignition quality of gasoline fuels in partially premixed combustion in diesel engines . Proc. Combust. Inst. , 33 , 3015 .
  • Kaneko , M. , Morikawa , K. , Itoh , J. , and Saishu , J. 2003 . A study on homogeneous charge compression ignition gasoline engines . JSME Int. J., Ser. B , 46 , 31 .
  • Kee , R.J. , Rupley , F.M. , Miller , J.A. , Coltrin , M.E. , Grcar , J.F. , Meeks , E. , Moffat , H.K. , Lutz , A.E. , Dixon-Lewis , G. , Smooke , M.D. , Warnatz , J. , Evans , G.H. , Larson , R.S. , Mitchell , R.E. , Petzold , L.R. , Reynolds , W.C. , Caracotsios , M. , Stewart , W.E. , Glarborg , P. , Wang , C. , and Adigun , O. 2000 . CHEMKIN Collection, Release 3.6, Reaction Design, Inc., San Diego, CA.
  • Killingsworth , N. , Aceves , S. , Flowers , D. , and Krstic , M. 2006 . A simple HCCI engine model for control. Presented at the IEEE International Conference on Control Applications, October 4–6, Munich, Germany.
  • Kong , S.C. , Marriott , C.D. , Reitz , R.D. , and Christensen , M. 2001 . Modeling and experiments of HCCI engine combustion using detailed chemical kinetics with multidimensional CFD. SAE Paper 2001-01-1026.
  • Kwon , O.C. , Hassan , M.I. , and Faeth , G.M. 2000 . Flame/stretch interactions of premixed fuel-vapor/O/N flames . J. Propul. Power , 16 , 513 .
  • Kraft , M. , Maigaard , P. , Mauss , F. , Christensen , M. , and Johansson , B. 2000 . Investigation of combustion emissions in a homogeneous charge compression injection engine: measurements and a new computational model . Proc. Combust. Inst. , 28 , 1195 .
  • Li , J. , Kazakov , A. , Chaos , M. , and Dryer , F.L. 2007 . Chemical kinetics of ethanol oxidation. Presented at the Fifth U.S. Combustion Meeting, March 25–28, San Diego, CA.
  • Li , J. , Kazakov , A. , and Dryer , F.L. 2004 . Experimental and numerical studies of ethanol decomposition reactions . J. Phys. Chem. A , 108 , 7671 .
  • Lü , X. , Chen , W. , and Huang , Z. 2005a . A fundamental study on the control of the HCCI combustion and emissions by fuel design concept combined with controllable EGR. Part 1. The basic characteristics of HCCI combustion . Fuel , 84 , 1074 .
  • Lü , X. , Chen , W. , and Huang , Z. 2005b . A fundamental study on the control of the HCCI combustion and emissions by fuel design concept combined with controllable EGR. Part 2. Effect of operating conditions and EGR on HCCI combustion . Fuel , 84 , 1084 .
  • Lü , X. , Hou , Y. , Zu , L. , and Huang , Z. 2006 . Experimental study on the auto-ignition and combustion characteristics in the homogeneous charge compression ignition (HCCI) combustion operation with ethanol/n heptanes blend fuels by port injection . Fuel , 85 , 2622 .
  • Lü , X. , Ji , L. , Zu , L. , Hou , Y. , Huang , C. , and Huang , Z. 2007. Experimental study and chemical analysis of n-heptane homogeneous charge compression ignition combustion with port injection of reaction inhibitors. Combust. Flame , 149, 261.
  • Lutz , A.E. , Kee , R.J. , and Miller , J.A. 1987 . SENKIN: A FORTRAN program for predicting homogeneous gas phase chemical kinetics with sensitivity analysis. Sandia Report SAND 87–8248, Sandia National Laboratories.
  • Machrafi , H. , Cavadis , S. , and Amouroux , J. 2010 . Influence of fuel type, dilution and equivalence ratio on the emission reduction from the auto-ignition in an homogeneous charge compression ignition engine . Energy , 35 , 1829 .
  • Mack , J.H. , Aceves , S.M. , and Dibble , R.W. 2009 . Direct use of wet ethanol in a homogeneous charge compression ignition (HCCI) engine . Energy , 34 , 782 .
  • Maigaard , P. , Mauss , F. , and Kraft , M. 2000 . Homogeneous charge compression ignition engine: a simulation study on the effects of inhomogeneities. In Proceedings of the ASME Spring Technical Conference, vol. 34, V. W. Wong (Ed.), American Society of Mechanical Engineers, New York, p. 63.
  • Maigaard , P. , Mauss , F. , and Kraft , M. 2003 . Homogeneous charge compression ignition engine: A simulation study on the effects of inhomogeneities . Trans. ASME , 125 , 466 .
  • Marinov , N.M. 1999 . A detailed chemical kinetic model for high temperature ethanol oxidation . Int. J. Chem. Kinet. , 31 , 183 .
  • Natarajan , K. , and Bhaskaran , K.A. 1981 . An experimental and analytical study of methanol ignition behind shock waves . Combust. Flame , 43 , 35 .
  • Norton , T.S. , and Dryer , F.L. 1992 . An experimental and modeling study of ethanol oxidation kinetics in an atmospheric pressure flow reactor . Int. J. Chem. Kinet. , 24 , 319 .
  • Ogura , T. , Sakai , Y. , Miyoshi , A. , Koshi , M. , and Dagaut , P. 2007 . Modeling of the oxidation of primary reference fuel in the presence of oxygenated octane improvers: ethyl tert-butyl ether and ethanol . Energy Fuels , 21 , 3233 .
  • Park , J. , Zhu , R.S. , and Lin , M.C. 2002 . Thermal decomposition of ethanol. I . Ab initio molecular orbital/Rice-Ramsperger-Kassel-Marcus prediction of rate constant and product branching ratios. J. Chem. Phys. , 17 , 3224 .
  • Pitz , W.J. , Cernansky , N.P. , Dryer , F.L. , Egolfopoulos , F.N. , Farrel , J.T. , Friend , D.G. , and Pitsch , H. 2007 . Development of an experimental database and chemical kinetic models for surrogate gasoline fuels. SAE Paper 2007-01-0175.
  • Rajan , K. , and Senthilkumar , K.R. 2009 . Effect of exhaust gas recirculation (EGR) on the performance and emission characteristics of diesel engine with sunflower oil methyl ester . Jordan J. Mech. Ind. Eng. , 3 , 306 .
  • Ryan , T.W. III , and Callahan , T.J. 1996 . Homogeneous charge compression ignition of diesel fuel. SAE Paper 961160.
  • Saisirirat , P. , Togbé , C. , Chanchaona , S. , Foucher , F. , Mounaïm-Rousselle , C. , and Dagaut , P. 2011 . Auto-ignition and combustion characteristics in HCCI and JSR using 1-butanol/n-heptane and ethanol/n-heptane blends . Proc. Combust. Inst. , 33 , 3007 .
  • Shi , L. , Cui , Y. , Deng , K. , Peng , H. , and Chen , Y. 2006 . Study of low emission homogeneous charge compression ignition (HCCI) engine using combined internal and external exhaust gas recirculation (EGR) . Energy , 31 , 2665 .
  • Shibata , G. , Oyama , K. , Urushihara , T. , and Nakano , T. 2005 . Correlation of low temperature heat release with fuel composition and HCCI engine combustion. SAE Paper 2005-01-0138.
  • Simon , Y. , Scacchi , G. , and Baronnet , F. 1996 . Études des réactions d'oxydation du n-heptane et de l'isooctane . Can. J. Chem. , 74 , 1391 .
  • Smith , J.M. , Simmie , J.M. , and Curran , H.J. 2005 . Autoignition of heptanes: Experiments and modeling . Int. J. Chem. Kinet. , 37 , 728 .
  • Smith , J.R. , Aceves , S.M. , Westbrook , C. , and Pitz , W. 1997. Modeling of homogeneous charge compression ignition (HCCI) of methane. In Proceedings of the 1997 ASME Internal Combustion Engine Fall Technical Conference, vol. 29, T. Uzkan (Ed.), American Society of Mechanical Engineers, New York, p. 85.
  • van Lipzig , J.P.J. , Nilsson , E.J.K. , de Goey , L.P.H. , and Konnov , A.A. 2011 . Laminar burning velocities of n-heptane, iso-octane, ethanol and their mixtures. Presented at the Fifth European Combustion Meeting, June 29–July 1, Cardiff, Wales, UK.
  • Vermeer , D.J. , Meyer , J.W. , and Oppenheim , A.K. 1972 . Auto-ignition of hydrocarbons behind reflected shock waves . Combust. Flames , 18 , 327 .
  • Vivas , B.M.M. , and Zanoelo , E.F. 2011 . An experimental investigation of flammability limits and autoignition temperatures of petrofuels and biofuels in a tubular burner . Combust. Sci. Technol. , 183 , 1433 .
  • Westbrook , C.K. 2000 . Chemical kinetics of hydrocarbon ignition in practical combustion systems . Proc. Combust. Inst. , 28 , 1563 .
  • Yates , A. , Bell , A. , and Swarts , A. 2010 . Insights relating to the autoignition characteristics of alcohol fuels . Fuel , 89 , 83 .
  • Zheng , J. , Yang , W. , Miller , D.L. , and Cernansky , P. 2001 . Prediction of pre-ignition reactivity and ignition delay for HCCI using a reduced chemical kinetic model. SAE Paper 2001-01-1025.

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