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

A Study of Ignition Characteristics of an HCCI Engine Operating on a Two-component Fuel

Journal Article
2010-32-0098
ISSN: 1946-3936, e-ISSN: 1946-3944
Published September 28, 2010 by SAE International in United States
A Study of Ignition Characteristics of an HCCI Engine Operating on a Two-component Fuel
Sector:
Citation: Saitou, K., Iijima, A., Otagiri, Y., Yoshida, K. et al., "A Study of Ignition Characteristics of an HCCI Engine Operating on a Two-component Fuel," SAE Int. J. Engines 3(2):529-536, 2010, https://doi.org/10.4271/2010-32-0098.
Language: English

References

  1. Thiring, R. H. “Homogeneous Charge Compression-Ignition (HCCI) Engines,” SAE Technical Paper 892068 1989
  2. Christensen, M. Einewall, P. Johansson, B. “Homogeneous Charge Compression Ignition (HCCI) Using Isooctane, Ethanol and Natural Gas-A Compression With Spark-Ignition Operation,” SAE Technical Paper 972874 1997
  3. Aoyama, T. Hattori, Y. Mizuta, Jo. Sato, Y. “An Experimental Study on Premixed-Charge Compression-Ignition Gasoline Engine,” SAE Technical Paper 960081 1996
  4. Onishi, S. Jo, S. H. Shoda, K. Jo, D. P. Kato, S. “Active Thermo-Atmosphere Combustion (ATAC) - A New Combustion Process for Internal Combustion Engines,” SAE Technical Paper 790501 1979
  5. Iida, N. “Combustion Analysis of Method-Fueled Active Thermo-Atmosphere Combustion (ATAC) Engine Using a Spectroscopic Observation,” SAE Technical Paper 940684 1994
  6. Ishibashi, Y. Asai, M. “Improving the Exhaust Emissions of Two -Stroke Engines by Applying the Activated Radical Combustion,” SAE Technical Paper 960742 1996
  7. Iijima, A. Shoji, H. A Study on HCCI Combustion using Light Emission and Absorption Measurements JSAE Transactions (in Japanese) 38 6 83 88 2007
  8. Katayama, T. Yamasaki, Y. Kasutya, H. Iijima, A. Shoji, H. A Study of Combustion Characteristics of an HCCI Engine using Internal EGR Proceedings of the 2008 JSAE Annual Congress (in Japanese), No.124-08 15 18 2008
  9. Saitou, K. Katayama, T. Iijima, A. Shoji, H. A Study of Combustion Characteristics of an HCCI Engine using Spectroscopic Techniques Proceedings of the 2009 JSAE Annual Congress (in Japanese), No.91-09 21 24 2009
  10. Gaydon, A. G. The Spectroscopy of Flame 2nd London Chapman and Hall Ltd 1974 412
  11. Shoji, H. Saima, A. Shiino, K. Simultaneous Measurement of Light Absorption Behavior of Unburned Gas During Knocking Operation SAE 1993 Transactions, Section-4 102 1492 1550 1993
  12. Heywood, J. B. “Internal Combustion Engine Fundamentals” McGraw-Hill International Editions 1989
  13. Curran, H. J. Gaffuri, P. Pitz, W. J. Westbrook, C. K. A Comprehensive Modeling Study of n-Heptane Oxidation Combustion and Flame 114 149 177 1998
  14. Curran, H. J. Gaffuri, P. Pitz, W. J. Westbrook, C. K. A Comprehensive Modeling Study of n-Heptane Oxidation Combustion and Flame 129 253 280 2002
  15. Curran, H. J. P. Pitz, W. J. Westbrook, C. K. Callahan, C. V. Dryer, F. L. Oxidation of Automotive Primary Reference Fuels at Elevated Pressures Proc. Combust. Inst. 27 379 387 1998

Cited By