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Original Articles

COMPUTATIONAL STUDY OF PARTIAL FUEL STRATIFICATION FOR HCCI ENGINES USING GASOLINE SURROGATE REDUCED MECHANISM

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Pages 332-354 | Received 24 Jun 2013, Accepted 25 Nov 2013, Published online: 24 Feb 2014

REFERENCES

  • Abraham , J. 2011 . Computational study of charge stratification in early-injection SCCI engines under light-load conditions . Int. J. Automot. Technol. , 12 , 721 – 732 .
  • Amsden , A.A. 1997. KIVA3 V: A block structured KIVA program for engines with vertical or canted valves . Technical report, Los Alamos National Laboratory , July.
  • Chen , J.-Y. 2001 . Automatic generation of reduced mechanisms and their applications to combustion modeling . Trans. Aeronaut. Astronaut. Soc. China , 33 , 59 – 67 .
  • Dahl , D. , and Denbratt , I. 2011 . HCCI/SCCI load limits and stoichiometric operation in a multicylinder naturally aspirated spark ignition engine operated on gasoline and e85 . Int. J. Engine Res. , 12 , 58 – 68 .
  • Dec , J. 2009 . Advanced compression-ignition engines—understanding the in-cylinder processes . Proc. Combust. Inst. , 32 ( 2 ), 2727 – 2742 .
  • Dec , J. , and Hwang , W. 2009 . Characterizing the development of thermal stratification in an HCCI engine using planar-imaging thermometry . SAE Int. J. Engines , 2 ( 1 ), 421 – 438 .
  • Dec , J. , Hwang , W. , and Sjöberg , M. 2006 . An investigation of thermal strati?cation in HCCI engines using chemiluminescence imaging . SAE Technical Paper 2006-01-1518 .
  • Dec , J. , Yang , Y. , and Dronniou , N. 2011 . Boosted HCCI-controlling pressure-rise rates for performance improvements using partial fuel strati?cation with conventional gasoline . SAE Int. J. Engines , 4 ( 1 ), 1169 – 1189 .
  • Gauthier , B.M. , Davidson , D.F. , and Hanson , R.K. 2004 . Shock tube determination of ignition delay times in full-blend and surrogate fuel mixtures . Combust. Flame , 139 ( 4 ), 300 – 311 .
  • Hwang , W. , Dec , J. , and Sjöberg , M. 2008 . Spectroscopic and chemical-kinetic analysis of the phases of HCCI autoignition and combustion for single-and two-stage ignition fuels . Combust. Flame , 154 ( 3 ), 387 – 409 .
  • Jerzembeck , S. , Peters , N. , Pepiot-Desjardins , P. , and Pitsch , H. 2009 . Laminar burning velocities at high pressure for primary reference fuels and gasoline: Experimental and numerical investigation . Combust. Flame , 156 ( 2 ), 292 – 301 .
  • Kee , R.J. , Rupley , F.M. , Meeks , E. , and Miller , J.A. 1996 . CHEMKIN-III: A FORTRAN chemical kinetics package for the analysis of gas-phase chemical and plasma kinetics . Technical report , Sandia National Laboratories , May .
  • Kokjohn , S.L. , Hanson , R.M. , Splitter , D.A. , and Reitz , R.D. 2011 . Fuel reactivity controlled compression ignition (RCCI): A pathway to controlled high-efficiency clean combustion . Int. J. Engine Res. , 12 ( 3 ), 209 – 226 .
  • Lu , X. , Han , D. , and Huang , Z. 2011 . Fuel design and management for the control of advanced compression-ignition combustion modes . Prog. Energy Combust. Sci. , 37 ( 6 ), 741 – 783 .
  • Ma , J. , Lu , X. , Ji , L. , and Huang , Z. 2008 . Evaluation of SCCI potentials in comparison to HCCI and conventional DICI combustion using n-heptane . Energy Fuels , 22 ( 2 ), 954 – 960 .
  • 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 ( 11 ), 5215 – 5223 .
  • 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 ( 1 ), 193 – 200 .
  • Patterson , M. , and Reitz , R. 1998 . Modeling the effects of fuel spray characteristics on diesel engine combustion and emission . SAE Technical Paper 980131 .
  • Sjöberg , M. , and Dec , J.E. ( 2007 ). Comparing late-cycle autoignition stability for single-and two-stage ignition fuels in HCCI engines . Proc. Combust. Inst. , 31 ( 2 ), 2895 – 2902 .
  • Tham , Y.F. , Bisetti , F. , and Chen , J.-Y. 2008 . Development of a highly reduced mechanism for iso-octane HCCI combustion with targeted search algorithm . J. Eng. Gas Turbines Power , 130 ( 4 ), 042804 .
  • Yang , Y. , Dec , J. , Dronniou , N. , and Cannella , W. 2012. Boosted HCCI combustion using low-octane gasoline with fully premixed and partially stratified charges. SAE Int. J. Engines , 5(3), 1075–1088.
  • Yang , Y. , Dec , J.E. , Dronniou , N. , and Sjöberg , M. 2011 . Tailoring HCCI heat-release rates with partial fuel stratification: Comparison of two-stage and single-stage-ignition fuels . Proc. Combust. Inst. , 33 ( 2 ), 3047 – 3055 .
  • Zheng , Z. , and Yao , M. 2009 . Charge stratification to control HCCI: Experiments and CFD modeling with n-heptane as fuel . Fuel , 88 ( 2 ), 354 – 365 .
  • Zheng , Z. , Yao , M. , and Wu , W. 2010 . Numerical simulation on combustion and emission processes of premixed/direct-injected fuel stratification combustion . Int. J. Green Energy , 7 ( 5 ), 498 – 515 .
  • 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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