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Original Articles

Acceleration of the chemistry solver for modeling DI engine combustion using dynamic adaptive chemistry (DAC) schemes

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Pages 69-89 | Received 21 Aug 2009, Accepted 04 Dec 2009, Published online: 04 Feb 2010

References

  • Lee , S. , Gonzalez , M. A. and Reitz , R. D. 2007 . Effects of engine operating parameters on near stoichiometric diesel combustion characteristics SAE Paper 2007-01-0121
  • Nevin , R. M. , Sun , Y. , Gonzalez , M. A. and Reitz , R. D. 2007 . PCCI investigation using variable intake valve closing in a heavy duty diesel engine SAE Paper 2007-01-0903
  • Kimura , S. , Aoki , O. , Ogawa , H. , Shigeo , M. and Yoshiteru , E. 1999 . New combustion concept for ultra-clean and high-efficiency small DI diesel engines SAE Paper 1999-01-3681
  • Kimura , S. , Aoki , O. , Kitahara , Y. and Aiyoshizawa , E. 2001 . Ultra-clean combustion technology combining a low-temperature and premixed combustion concept for meeting future emission standards SAE Paper 2001-01-0200
  • Kong , S.-C. and Reitz , R. D. 2002 . Use of detailed chemical kinetics to study HCCI engine combustion with consideration of turbulent mixing effects . J Eng. Gas Turb. Power , 124 : 702 – 707 .
  • Park , S.-W. and Reitz , R. D. 2007 . Numerical study on the low emission window of homogeneous charge compression ignition diesel combustion, Combust . Sci. Tech. , 179 : 2279 – 2307 .
  • Kee , R. J. , Rupley , F. M. and Miller , J. A. 1989 . CHEMKIN II: A Fortran chemical kinetics package for the analysis of gas phase chemical kinetics , Sandia National Laboratories . Sandia Report SAND89-8009B, UC-706
  • Amsden , A. A. 1993 . KIVA-3:A KIVA program with block-structured mesh for complex geometry , Los Alamos National Laboratory . Report No. LA-12503-MS
  • Ra , Y. , Hruby , E. and Reitz , R. D. 2005 . Parametric study of combustion characteristics in a direct-injection diesel homogeneous charge compression ignition engine with a low-pressure fuel injector . Int J Engine Res. , 6 : 215 – 230 .
  • Singh , S. R. D. , Reitz Musculus , M. P. B. and Lachaux , T. 2007 . Validation of engine combustion models against detailed in-cylinder optical diagnostics data for a heavy-duty compression-ignition engine . Int J Engine Res. , 8 : 97 – 126 .
  • Shi , Y. and Reitz , R. D. 2008 . Optimization study of the effects of bowl geometry, spray targeting and swirl ratio for a heavy-duty diesel engine operated at low- and high-load . Int. J. Engine Res. , 9 : 325 – 346 .
  • Shi , Y. and Reitz , R. D. 2008 . Assessment of optimization methodologies to study the effects of bowl geometry, spray targeting and swirl ratio for a heavy-duty diesel engine operated at high load . SAE Int. J. Engines , 117 : 537 – 557 .
  • Babajimopoulos , A. , Assanis , D. N. , Flowers , D. L. , Aceves , S. M. and Hessel , R. P. 2005 . A fully coupled computational fluid dynamics and multi-zone model with detailed chemical kinetics for the simulation of premixed charge compression ignition engines . Int. J. Engine Res. , 6 : 497 – 512 .
  • Shi , Y. and Reitz , R. D. 2009 . An adaptive multi-grid chemistry (AMC) model for efficient simulation of HCCI and DI engine combustion . Combust. Theory Modelling , 13 : 83 – 104 .
  • Liang , L. , Stevens , J. and Ferrell , J. 2009 . A dynamic multi-zone partitioning scheme for solving detailed chemical kinetics in reactive flow computations . Combust. Sci. Tech. , 181 : 1345 – 1371 .
  • Mass , U. and Pope , S. B. 1992 . Implementation of simplified chemical kinetics based on intrinsic low-dimensional manifolds . Proc. Combust. Inst. , 24 : 103 – 112 .
  • Lam , S. H. and Goussis , D. A. 1988 . Understanding complex chemical kinetics with computational singular perturbation . Proc. Combust. Inst. , 22 : 931 – 941 .
  • Lu , T. and Law , C. K. 2005 . A directed relation graph method for mechanism reduction . Proc. Combust. Inst. , 30 : 1333 – 1341 .
  • Pepiot-Desjardins , P. and Pitsch , H. 2008 . An efficient error-propagation-based reduction method for large chemical kinetic mechanisms . Combust. Flame , 154 : 67 – 81 .
  • Lu , T. and Law , C. K. 2006 . Linear time reduction of large kinetic mechanisms with directed relation graph: n-heptane and iso-octane . Combust. Flame , 144 : 24 – 36 .
  • Liang , L. , Stevens , J. G. and Farrell , J. T. 2009 . A dynamic adaptive chemistry scheme for reactive flow computations . Proc. Combust. Inst. , 32 : 527 – 534 .
  • Liang , L. , Stevens , J. G. , Raman , S. and Farrell , J. T. 2009 . The use of dynamic adaptive chemistry in combustion simulation of gasoline surrogate fuels . Combust. Flame , 156 : 1493 – 1502 .
  • Ando , H. , Sakai , Y. and Kuwahara , K. 2009 . Universal rule of hydrocarbon oxidation SAE Paper 2009-01-0948
  • Patel , A. , Kong , S.-C. and Reitz , R. D. 2003 . Development and validation of a reduced reaction mechanism for HCCI engine simulations SAE Paper 2003-01-0743
  • Golovitchev , V. I. available at http://www.tfd.chalmers.se/~valeri/MECH.html Accessed in 2006
  • Akihama , K. , Takatori , Y. , Inagaki , Z. , Sasaki , S. and Dean , A. M. Mechanism of the smokeless rich diesel combustion by reducing temperature SAE Paper 2001-01-0655
  • Nagy , T. and Turanyi , T. 2009 . Reduction of very large reaction mechanisms using methods based on simulation error minimization . Combust Flame , 156 : 417 – 428 .
  • Mehl , M. and Pitz , B. 2009 . A revised detailed n-heptane mechanism, private communication
  • https://www-pls.llnl.gov/?url=science_and_technology-chemistry-combustion-nc7h16 Accessed on March, 2009
  • Smith , G. P. , Golden , D. M. , Frenklach , M. , Moriarty , N. W. , Eiteneer , B. , Goldenberg , M. , Bowman , C. T. , Hanson , R. K. , Song , S. , Gardiner , W. C. Jr. , Lissianski , V. V. and Qin , Z. available at http://www.me.berkeley.edu/gri_mech Accessed on March, 2009
  • Han , Z. and Reitz , R. D. 1995 . Turbulence modeling of internal combustion engines using RNG k-ε Models . Combust Sci. Tech. , 106 : 267 – 295 .
  • Reitz , R. D. 1987 . Modeling atomization processes in high-pressure vaporization sprays . Atom. Sprays , 3 : 309 – 337 .
  • Beale , J. C. and Reitz , R. D. 1999 . Modeling spray atomization with the Kelvin-Helmholtz/Rayleigh-Taylor hybrid model . Atom. Sprays , 9 : 623 – 650 .
  • Kong , S.-C. , Sun , Y. and Reitz , R. D. 2007 . Modeling diesel spray flame lift-off, sooting tendency and NOx emissions using detailed chemistry with phenomenological soot model . J. Eng. Gas Turb. Power , 129 : 245 – 251 .
  • Ra , Y. and Reitz , R. D. 2008 . A reduced chemical kinetic model for IC engine combustion simulations with primary reference fuels . Combust. Flame , 155 : 713 – 738 .
  • Opat , R. M. , Ra , Y. , Gonzalez , M. A. D. , Krieger , R. , Reitz , R. D. , Foster , D. E. , Durrett , R. P. and Siewert , R. M. 2007 . Investigation of mixing and temperature effects on HC/CO emissions for highly dilute low temperature combustion in a light duty diesel engine SAE Paper 2007-01-0193
  • Shi , Y. , Kokjohn , S. J. , Ge , H.-W. and Reitz , R. D. Efficient multidimensional simulation of HCCI and DI engine combustion with detailed chemistry SAE Paper 2009-01-0701

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