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Tsuda, Tsuyoshi
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A Study of the Knocking Mechanism in Terms of Flame Propagation Behavior Based on 3D Numerical Simulations

SAE International Journal of Engines

  • Journal Article
  • 2009-01-0699
Published 2009-04-20 by SAE International in United States
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The Effect of Flame Propagation Behavior on Knocking Occurrence Using 3D Numerical Study

  • Technical Paper
  • 2008-08-0453
Published 2008-10-22 by Society of Automotive Engineers of Japan in Japan
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Development of a Three-Dimensional Diesel Combustion Model Considering Premixed Region

  • Technical Paper
  • 2007-08-0611
Published 2007-10-01 by Society of Automotive Engineers of Japan in Japan
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Analysis and Prediction of Unburned HCs in a Lean-Burn Engine

Published 2007-04-16 by SAE International in United States
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Development of Three-Dimensional Combustion Simulation~Prediction of Unburned Fuel for Lean Burn SI Engine

  • Technical Paper
  • 2006-08-0433
Published 2006-09-27 by Society of Automotive Engineers of Japan in Japan
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Development of a Novel Flame Propagation Model (UCFM: Universal Coherent Flamelet Model) for SI Engines and Its Application to Knocking Prediction

Published 2005-04-11 by SAE International in United States
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Three-Dimensional Simulation of Spark Ignition Engine Combustion Using a High-Accuracy Flame Propagation Model

  • Technical Paper
  • 2004-08-0039
Published 2004-05-19 by Society of Automotive Engineers of Japan in Japan
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Development of a Three-Dimensional Knocking Simulation for Spark Ignition Engines

  • Technical Paper
  • 2003-08-0360
Published 2003-09-17 by Society of Automotive Engineers of Japan in Japan
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Development of a Flame Propagation Model for Si Internal Combustion Engines

  • Technical Paper
  • 2003-08-0197
Published 2003-05-21 by Society of Automotive Engineers of Japan in Japan
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Development of a Flame Propagation Model for Stratified Combustion

  • Technical Paper
  • 2002-08-0328
Published 2002-07-23 by Society of Automotive Engineers of Japan in Japan