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

The Effect of the Induction of Nitrogen Oxides on Natural Gas HCCI Combustion

Journal Article
2014-01-2697
ISSN: 1946-3952, e-ISSN: 1946-3960
Published October 13, 2014 by SAE International in United States
The Effect of the Induction of Nitrogen Oxides on Natural Gas HCCI Combustion
Sector:
Citation: Kawasaki, K., Kubo, S., Yamane, K., and Kondo, C., "The Effect of the Induction of Nitrogen Oxides on Natural Gas HCCI Combustion," SAE Int. J. Fuels Lubr. 7(3):718-725, 2014, https://doi.org/10.4271/2014-01-2697.
Language: English

References

  1. Christensen , M. , Johansson , B. , and Einewall , P. Homogeneous Charge Compression Ignition (HCCI) Using Isooctane, Ethanol and Natural Gas - A Comparison with Spark Ignition Operation SAE Technical Paper 972874 1997 10.4271/972874
  2. Fiveland , S. , Agama , R. , Christensen , M. , Johansson , B. et al. Experimental and Simulated Results Detailing the Sensitivity of Natural Gas HCCI Engines to Fuel Composition SAE Technical Paper 2001-01-3609 2001 10.4271/2001-01-3609
  3. Jun , D. , Ishii , K. , and Iida , N. Combustion Analysis of Natural Gas in a Four Stroke HCCI Engine Using Experiment and Elementary Reactions Calculation SAE Technical Paper 2003-01-1089 2003 10.4271/2003-01-1089
  4. Kawasaki , K. , Takegoshi , A. , Yamane , K. , Ohtsubo , H. et al. An Experimental Study on the Improvement of Engine Performance and Exhaust Emissions from Small-scale PCCI Engines Fuelled by Natural Gas SAE Technical Paper 2005-01-2124 2005 10.4271/2005-01-2124
  5. Ohtsubo , H. , Yamauchi , K. , Nakazono , T. , Yamane , K. et al. Influence of Compression Ratio on Performance and Variations in Each Cylinder of Multi-Cylinder Natural Gas Engine with PCCI Combustion SAE Technical Paper 2007-01-1877 2007 10.4271/2007-01-1877
  6. Yap , D. , Megaritis , A. , Wyszynski , M. , and Xu , H. Residual Gas Trapping for Natural Gas HCCI SAE Technical Paper 2004-01-1973 2004 10.4271/2004-01-1973
  7. Babajimopoulos , A. , Assanis , D. , and Fiveland , S. An Approach for Modeling the Effects of Gas Exchange Processes on HCCI Combustion and Its Application in Evaluating Variable Valve Timing Control Strategies SAE Technical Paper 2002-01-2829 2002 10.4271/2002-01-2829
  8. Kuzuyama , H. , Aoki , S. et al. A study on natural gas fueled homogeneous charge compression ignition engine Proc. 2004 annual congress of JSAE, No.13-04 9 12 2004
  9. Chen R. , Milovanovic N. A computational study into the effect of exhaust gas recycling on homogeneous charge compression ignition combustion in internal combustion engines fuelled with methane Int. J. of Thermal Sciences 41 9 805 813 2002 10.1016/S1290-0729(02)01375-3
  10. Allenby , S. , Chang , W-C. , Megaritis , A. and Wyszynski , M. L. Hydrogen enrichment : a way to maintain combustion stability in a natural gas fuelled engine with exhaust gas recirculation, the potential of fuel reforming Proc. the IMechE 215 405 418 2001 10.1243/0954407011525737
  11. Kawasaki , K. , Takegoshi , A. , Yamane , K. , Ohtsubo , H. et al. Combustion Improvement and Control for a Natural Gas HCCI Engine by the Internal EGR by Means of Intake-valve Pilot-opening SAE Technical Paper 2006-01-0208 2006 10.4271/2006-01-0208
  12. Kawasaki , K. , Hirota , K. , Nagata , S. and Yamane , K. et al. Improvement of Natural-gas HCCI Combustion by Internal EGR by Means of Exhaust Valve Re-opening Proc. of Small Engine Technology Conference 2009, No.2009-32-0079 2009
  13. Hori , M. , Matsunaga , N. , Marinov , N. , and Pitz , W. et al. An Experimental and Kinetic Calculation of the Promotion Effect of Hydrocarbons on the NO-NO 2 conversion in a Flow Reactor Proc. Symposium (International) on Combustion 27 1 389 396 1998 10.1016/S0082-0784(98)80427-X
  14. Bromly , J. H. , Barnes , F. J. , Muris , S. and You , X. et al. Kinetic and Thermodynamic Sensitivity Analysis of the NO-Sensitised Oxidation of Methane Combustion Science and Technology 115 259 296 1996 10.1080/00102209608935532
  15. Chan , Y. L. , Barnes , F. J. , Bromly J. H. , and Konnov A. A. et al. The Differentiated Effect of NO and NO 2 in Promoting Methane Oxidation Proc. of the Combustion Inst. 33 441 447 2011 10.1016/j.proci.2010.05.029
  16. Rasmussen , C. L. , Rasmussen , A. E. , and Glarborg , P. Sensitizing Effects of NOx on CH4 Oxidation at High Pressure Combustion and Flame 154 529 545 2008 10.1016/j.combustflame.2008.01.012
  17. Faravelli , T. , Frassoldati , A. , and Ranzi , E. Kinetic Modeling of the Interactions between NO and Hydrocarbons in the Oxidation of Hydrocarbons at Low Temperatures Combustion and Flame 132 188 207 2003 10.1016/S0010-2180(02)00437-6
  18. Dagaut , P. and Nicolle , A. Experimental Study and Detailed Kinetic Modeling of the Effect of Exhaust Gas on Fuel Combustion : Mutual Sensitization of the Oxidation of Nitric Oxide and Methane over Extended Temperature and Pressure Ranges Combustion and Flame 140 161 171 2005 10.1016/j.combustionflame.2004.11.003
  19. Gersen , S. , Mokhov , A. V. , Darmeveil , J. H. , and Levinsky , H. B. et al. Ignition-Promoting Effect of NO2 on Methane, Ethane and Methane/Ethane mixtures in a Rapid Compression Machine Proc. of the Combustion Inst. 33 433 440 2011 10.1016/j.proci.2010.05.097

Cited By