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

Two-Stage Ignition Occurrence in the End Gas and Modeling Its Influence on Engine Knock

Journal Article
2017-24-0001
ISSN: 1946-3936, e-ISSN: 1946-3944
Published September 04, 2017 by SAE International in United States
Two-Stage Ignition Occurrence in the End Gas and Modeling Its Influence on Engine Knock
Sector:
Citation: Fandakov, A., Grill, M., Bargende, M., and Kulzer, A., "Two-Stage Ignition Occurrence in the End Gas and Modeling Its Influence on Engine Knock," SAE Int. J. Engines 10(4):2109-2128, 2017, https://doi.org/10.4271/2017-24-0001.
Language: English

References

  1. Heywood J. B. Internal combustion engine fundamentals McGraw-Hill, Inc. USA 1988
  2. Kleinschmidt , W. Zur Simulation des Betriebs von Ottomotoren an der Klopfgrenze Association of German Engineers (VDI) Progress Reports, Series 12, Nr. 422 VDI 2000
  3. Livengood , J. C. and Wu , P. C. Correlation of autoignition phenomena in internal combustion engines and rapid compression machines Symp. Int. Combust 1955 5 347 356
  4. Grill , M. Objektorientierte Prozessrechnung von Verbrennungsmotoren Ph.D. Thesis University of Stuttgart 2006
  5. Cai , L. and Pitsch , H. Optimized chemical mechanism for combustion of gasoline surrogate fuels Combustion and Flame 162 2015 1623 1637
  6. Morgan , N. , Smallbone , A. , Bhave , A. , Kraft , M. et al. Mapping surrogate gasoline compositions into RON/MON space Combustion and Flame 157 2010 1122 1131
  7. Anderson , J. E. , Kramer , U. , Mueller , S. A. , Wallington , T. J. Octane Numbers of Ethanol- and Methanol-Gasoline Blends Estimated from Molar Concentrations Energy Fuels 24 2010 6576 6585
  8. Weisser , G. A. Modelling of Combustion and Nitric Oxide Formation for Medium-Speed DI Diesel Engines: A Comparative Evaluation of Zero- and Three-Dimensional Approaches Ph.D. Thesis Swiss Federal Institute of Technology in Zurich (ETHZ) 2006
  9. Lagarias , J. C. , Reeds , J. A. , Wright , M. H. , Wright , P. E. Convergence Properties of the Nelder-Mead Simplex Method in Low Dimensions SIAM Journal of Optimization 9 1 1998 112 147
  10. Tanaka , S. , Ayala , F. , Keck , J. C. , Heywood , J. B. Two-stage ignition in HCCI combustion and HCCI control by fuels and additives Combustion and Flame 132 2003 219 239
  11. Hernández , J. , Lapuerta , M. , Sanz-Argent , J. Autoignition prediction capability of the Livengood-Wu correlation applied to fuels of commercial interest International Journal of Engine Research 15 7 2014 817 829
  12. Pan , J. , Zhao , P. , Law , C. K. , Wei , H. A predictive Livengood-Wu correlation for two-stage ignition International Journal of Engine Research 17 8 2016 825 835
  13. Schnaubelt , S. Numerische Analyse des Selbstzündverhaltens einzelner Brennstofftropfen Ph.D. Thesis University of Bremen 2005
  14. Fandakov , A. , Grill , M. , Bargende , M. , Kulzer , A. C. Investigation of thermodynamic and chemical influences on knock for the working process calculation 17th Stuttgart international symposium Stuttgart 2017
  15. Grill , M. , Billinger , T. , and Bargende , M. Quasi-Dimensional Modeling of Spark Ignition Engine Combustion with Variable Valve Train SAE Technical Paper 2006-01-1107 2006 10.4271/2006-01-1107
  16. Franzke , D. Beitrag zur Ermittlung eines Klopfkriteriums der ottomotorischen Verbrennung und zur Vorausberechnung der Klopfgrenze Ph.D. thesis Technical University of Munich 1991
  17. Chen , L. , Li , T. , Yin , T. , Zheng , B. A predictive model for knock onset in spark-ignition engines with cooled EGR Energy Conversion and management 87 2014 946 955
  18. Bargende , M. , Heinle , M. , Berner , H.-J. Some Useful Additions to Calculate the Wall Heat Losses in Real Cycle Simulations 13. Conference „The Working Process of the Internal Combustion Engine Graz 2011 45 63
  19. Dechaux , J.C. , Delfosse , L. The negative temperature coefficient in the C 2 to C 13 hydrocarbon oxidation. I. Morphological results Combustion and Flame 34 1979 161 168

Cited By