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Low Emissions and High-Efficiency Diesel Combustion Using Highly Dispersed Spray with Restricted In-Cylinder Swirl and Squish Flows

Journal Article
2011-01-1393
ISSN: 1946-3936, e-ISSN: 1946-3944
Published April 12, 2011 by SAE International in United States
Low Emissions and High-Efficiency Diesel Combustion Using Highly Dispersed Spray with Restricted In-Cylinder Swirl and Squish Flows
Sector:
Citation: Inagaki, K., Mizuta, J., Fuyuto, T., Hashizume, T. et al., "Low Emissions and High-Efficiency Diesel Combustion Using Highly Dispersed Spray with Restricted In-Cylinder Swirl and Squish Flows," SAE Int. J. Engines 4(1):2065-2079, 2011, https://doi.org/10.4271/2011-01-1393.
Language: English

References

  1. Minato, A. et al. “Investigation of Premixed Lean Diesel Combustion with Ultra High Pressure Injection” JSAE, No. 69-04 350 2004
  2. Aoyagi, Y. et al. “Diesel combustion and emission study by use of high boost and high injection pressure in single-cylinder engine” JSAE 20035098 2003
  3. Wakisaka, Y. Hotta, Y. Inayoshi, M. Nakakita, K. et al. “Emissions Reduction Potential of Extremely High Boost and High EGR Rate for an HSDI Diesel Engine and the Reduction Mechanisms of Exhaust Emissions,” SAE Technical Paper 2008-01-1189 2008 10.4271/2008-01-1189
  4. Epping, K. Aceves, S. Bechtold, R. Dec, J. “The Potential of HCCI Combustion for High Efficiency and Low Emissions,” SAE Technical Paper 2002-01-1923 2002 10.4271/2002-01-1923
  5. Neely, G. D. Sasaki, S. Leet, J. A. “Experimental Investigation of PCCI-DI Combustion on Emissions in a Light-Duty Diesel Engine,” SAE Technical Paper 2004-01-0121 2004 10.4271/2004-01-0121
  6. Kokjohn, S. L. Hanson, R. M. Splitter, D. A. Reitz, R. D. “Experiments and Modeling of Dual-Fuel HCCI and PCCI Combustion Using In-Cylinder Fuel Blending,” SAE Int. J. Engines 2 2 24 39 2009 10.4271/2009-01-2647
  7. Noehre, C. Andersson, M. Johansson, B. Hultqvist, A. “Characterization of Partially Premixed Combustion,” SAE Technical Paper 2006-01-3412 2006 10.4271/2006-01-3412
  8. Hou, D. Zhang, H. Kalish, Y. Lee, C-f. F. Cheng, W. L. “Adaptive PCCI Combustion Using Micro-Variable Circular-Orifice (MVCO) Fuel Injector - Key Enabling Technologies for High Efficiency Clean Diesel Engines,” SAE Technical Paper 2009-01-1528 2009 10.4271/2009-01-1528
  9. Ickes, A. M. Assanis, D. N. Bohac, S. V. “Load Limits with Fuel Effects of a Premixed Diesel Combustion Mode,” SAE Technical Paper 2009-01-1972 2009 10.4271/2009-01-1972
  10. Fuyuto, T. Akihama, K. Fujikawa, T. Nakakita, K. “Diesel In-Cylinder Measurement Technique Using a Multi-Direction Optically Accessible Engine” Journal of Environment and Engineering 5 1 72 83 2010
  11. Inagaki, K. Ueda, M. Mizuta, J. Nakakita, K. et al. “Universal Diesel Engine Simulator (UniDES): 1st Report: Phenomenological Multi-Zone PDF Model for Predicting the Transient Behavior of Diesel Engine Combustion SAE Technical Paper 2008-01-0843 2008 10.4271/2008-01-0843
  12. Reitz, R.D. “Modeling atomization processes in high-pressure vaporizing sprays” Atomization Spray Technol. 3 309 1987
  13. Halstead, M. Kirsh, L. Quinn, C. “The autoignition of hydrocarbon fuels at high temperatures and pressures - fitting of a mathematical model” Combust. Flame 30 1977
  14. Kong, S.-C. Han, Z. Reitz, R. D. “Modeling Engine Spray Combustion Processes” AIAA Series Progress in Astronautics and Aeronautics, Recent Advances in Spray Combustion Kuo, K. K. 1995
  15. Hiroyasu, H. Arai, M. “Fuel Spray Penetration and Spray Angle in Diesel Engine (in Japanese with English summary)” JSAE No. 21 5 11 1980
  16. Kawamura, K. Saito, A. The 2nd Atomization Symposium 115 120 1993
  17. Ikegami, M. Shioji, M. Koike, M. “A stochastic approach to model the combustion process in direct-injection diesel engines” Twentieth symposium (International) on Combustion The Combustion Institute 217 224 1984
  18. Sihling, K. Woschni, G. “Experimental Investigation of the Instantaneous Heat Transfer in the Cylinder of a High Speed Diesel Engine,” SAE Technical Paper 790833 1979 10.4271/790833
  19. Pischinger, F. “Entwicklungsarbeitem von einem Verbrennungssytem fuer Fahrzeugdieselmotoren” ATZ 65 1 43 46 1963
  20. Akihama, K. Takatori, Y. Inagaki, K. Sasaki, S. Dean, A. M. “Mechanism of the Smokeless Rich Diesel Combustion by Reducing Temperature,” SAE Technical Paper 2001-01-0655 2001 10.4271/2001-01-0655
  21. Patterson, M. A. Reitz, R. D. “Modeling the Effects of Fuel Spray Characteristics on Diesel Engine Combustion and Emissions” SAE Technical Paper 980131 1998 10/4271/980131
  22. Kong, S-C. Han, Z. Reitz, R. D. “The Development and Application of a Diesel Ignition and Combustion Model for Multidimensional Engine Simulations,” SAE Technical Paper 950278 1995 10.4271/950278

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