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Kato, Satoshi
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New Mixture Formation Technology of Direct Fuel Injection Stratified Combustion SI Engine (OSKA)

Published 1987-09-01 by SAE International in United States
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Experimental Study on Premixed Charge Compression Ignition (PCCI) Engine With Direct Fuel Injection Impingement and Distribution (OSKA) System

  • Technical Paper
  • 2005-03-0071
Published 2005-08-22 by Society of Automotive Engineers of Korea in South Korea
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Study on HCCI Diesel Engine With Direct Injection Impingement and Distribution System

  • Technical Paper
  • 2004-08-0520
Published 2004-10-27 by Society of Automotive Engineers of Japan in Japan
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Performance of Direct Injection Methanol Engine With Fuel Jet Impingement and Distribution (OSKA) System~Investigation of the Fuel Injection Conditions

  • Technical Paper
  • 2007-08-0395
Published 2007-10-01 by Society of Automotive Engineers of Japan in Japan
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Numerical Analysis of Spray Characteristic Effects on Ignition and Combustion for Dual-Component Fuel

  • Technical Paper
  • 2011-08-0363
Published 2011-10-12 by Society of Automotive Engineers of Japan in Japan
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The Effect of Compression Ratio and Fuel Properties on Engine Performance of Premixed Charge Compression Ignition (PCCI) Engine Combined With OSKA System

  • Technical Paper
  • 2006-08-0421
Published 2006-09-27 by Society of Automotive Engineers of Japan in Japan
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The Influence of Compression Ratio on Engine Performance of Direct Injection Methanol Engine With Fuel Jet Impingement and Distribution (OSKA) System

  • Technical Paper
  • 2006-08-0582
Published 2006-09-27 by Society of Automotive Engineers of Japan in Japan
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Effect of DMC-Blended Fuel on PM Formation in Combustion Chamber of DI Diesel Engine by Direct Sampling System

  • Technical Paper
  • 2010-08-0268
Published 2010-05-19 by Society of Automotive Engineers of Japan in Japan
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Effect of ETBE Blended Fuel on PCCI Engine Performance With Direct Fuel Injection Impingement and Distribution (OSKA) System

  • Technical Paper
  • 2010-08-0269
Published 2010-05-19 by Society of Automotive Engineers of Japan in Japan
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Modeling of Auto-Ignition and Combustion Processes for Dual-Component Fuel Spray

SAE International Journal of Engines

  • Journal Article
  • 2011-24-0001
Published 2011-09-11 by SAE International in United States
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