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Influence of Fuel Properties on Operational Range and Thermal Efficiency of Premixed Diesel Combustion

Journal Article
2013-32-9054
ISSN: 1946-3952, e-ISSN: 1946-3960
Published October 15, 2013 by Society of Automotive Engineers of Japan in Japan
Influence of Fuel Properties on Operational Range and Thermal Efficiency of Premixed Diesel Combustion
Sector:
Citation: Xiong, Q., Inaba, K., Ogawa, H., and Shibata, G., "Influence of Fuel Properties on Operational Range and Thermal Efficiency of Premixed Diesel Combustion," SAE Int. J. Fuels Lubr. 6(3):1005-1013, 2013, https://doi.org/10.4271/2013-32-9054.
Language: English

References

  1. Takeda , Y. et al. Emission characteristics of premixed lean diesel combustion with extremely early staged fuel injection SAE paper 961163 1996
  2. Akagawa , H. et al. Approaches to solve problems of the premixed lean diesel combustion SAE paper 1999-01-0183 1999
  3. Hasegawa , R. et al. HCCI combustion in DI diesel engine SAE paper 2003-01-0745 2003
  4. Akihama , K. et al. Mechanism of the smokeless rich diesel combustion by reducing temperature SAE paper 2001-01-0655 2001
  5. Ogawa , H. et al. Characteristics of low temperature and low oxygen diesel combustion with ultra-high EGR Int. J. Engine Res. 2007 8 4 365 378
  6. Li , T. et al. Characterization of low temperature diesel combustion with various dilution gases SAE Trans. J. Engines 2007 116 3 120 131
  7. Li , T. et al. Characteristics of smokeless low temperature diesel combustion in various fuel-air mixing and expansion of operating load range SAE paper 2009-01-1449 2009
  8. Li , T. et al. Effects of in-cylinder temperature and fuel air mixing quality on smokeless low temperature diesel combustion Proc. COMODIA 2008 7 135 142
  9. Li , T. et al. Dependence of ultra-high EGR and low temperature diesel combustion on fuel properties SAE paper 2006-01-3387 2006
  10. Ickes , A. M. et al. Effect of fuel cetane number on a premixed diesel combustion mode Int. J. Engine Res. 2009 10 4 251 263
  11. Kalghatgi , G. T. et al. Advantages of fuels with high resistance to autoignition in late-injection, low-temperature, compression ignition combustion SAE paper 2006-01-3385 2006
  12. Kalghatgi , G. T. et al. Partially pre-mixed auto-ignition of gasoline to attain low smoke and low NOX at high load in a compression ignition engine and comparison with a diesel fuel SAE paper 2007-01-0006 2007
  13. Weall , A. J. et al. Investigation into partially premixed combustion in a light duty multi cylinder diesel engine fuelled with a mixture of gasoline and diesel SAE paper 2007-01-4058 2007
  14. Shibata , G. et al. Correlation of Low Temperature Heat Release with Fuel Composition and HCCI Engine Combustion SAE Paper, 2005-01-0138 2005
  15. Shibata , G. et al. Stabilizations of High Temperature Heat Release CA50 and Combustion Period against Engine Load with the Dosage of Toluene in Fuel SAE Paper, 2010-01-0575 2010
  16. Xiong , Q. et al. Influence of Fuel Properties on Operational Range and Combustion Characteristics of Premixed Diesel Combustion with High Volatility Fuel Proc. COMODIA 2012 7 392 397
  17. Sakai A et al. Improvements in PCCI Combustion and Emissions with Lower Distillation Temperature Fuels Int. J. Engine Res. 2005 6 5 433 442
  18. Ra , Y. , Loeper , P. , Reitz , R. , Andrie , M. et al. Study of High Speed Gasoline Direct Injection Compression Ignition (GDICI) Engine Operation in the LTC Regime SAE Int. J. Engines 4 1 1412 1430 2011 10.4271/2011-01-1182

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