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Tezaki, Atsumu
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Analysis of Reaction Mechanism Preparing Hot Ignition Observed in Homogeneous Compression of n-Heptane Air Mixture

Published 2019-12-19 by SAE International in United States
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Simplified Oxidation Mechanism of DME Applicable for Compression Ignition

Published 2003-05-19 by SAE International in United States
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Monitoring Intermediate Species and Analysis of Their Role in HCCI Combustion

Published 2005-09-11 by Consiglio Nazionale delle Ricerche in Italy
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A Chemical Mechanistic Analysis on Compression Ignition Process of Straight Chain Alkanes

Published 2004-06-08 by SAE International in United States
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Mechanism Controlling Autoignition Derived from Transient Chemical Composition Analysis in HCCI

Published 2007-07-23 by SAE International in United States
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Analysis of Reaction Mechanisms Controlling Cool and Thermal Flame with DME Fueled HCCI Engines

Published 2006-10-16 by SAE International in United States
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Chemical Kinetic Mechanism of Compression Ignition Derived from Intermediate Species for PRF and Toluene/n-Heptane Fuel Systems

SAE International Journal of Fuels and Lubricants

  • Journal Article
  • 2011-01-1784
Published 2011-08-30 by SAE International in United States
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Comparison of PRF and toluene/n-heptane mixture fuel in the mechanism of compression ignition using CA resolved sampling

SAE International Journal of Fuels and Lubricants

  • Journal Article
  • 2011-01-1785
Published 2011-08-30 by SAE International in United States
Annotation ability available