Influence of compression speed on HCCI ignition and combustion

Masato Kanehara, Hiroki Iino, Norimasa Iida

研究成果: Conference contribution

抄録

In HCCI Engine, the HCCI combustion characteristics come under the influence of change of compression speed corresponding to the engine speed. The purpose of this study is to investigate mechanism of influence of engine speed on HCCI combustion characteristics by using numerical analysis. At first, the influence of engine speed was showed. And then, in order to clarify the mechanism of influence of engine speed, results of kinetic computations were analyzed to investigate the elementary reaction path for heat release at transient temperatures by using contribution matrix.

元の言語English
ホスト出版物のタイトルSAE Technical Papers
DOI
出版物ステータスPublished - 2011

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Ignition
Engines
Numerical analysis
Kinetics
Temperature

ASJC Scopus subject areas

  • Automotive Engineering
  • Safety, Risk, Reliability and Quality
  • Pollution
  • Industrial and Manufacturing Engineering

これを引用

Kanehara, M., Iino, H., & Iida, N. (2011). Influence of compression speed on HCCI ignition and combustion. : SAE Technical Papers https://doi.org/10.4271/2011-01-1779

Influence of compression speed on HCCI ignition and combustion. / Kanehara, Masato; Iino, Hiroki; Iida, Norimasa.

SAE Technical Papers. 2011.

研究成果: Conference contribution

Kanehara, Masato ; Iino, Hiroki ; Iida, Norimasa. / Influence of compression speed on HCCI ignition and combustion. SAE Technical Papers. 2011.
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abstract = "In HCCI Engine, the HCCI combustion characteristics come under the influence of change of compression speed corresponding to the engine speed. The purpose of this study is to investigate mechanism of influence of engine speed on HCCI combustion characteristics by using numerical analysis. At first, the influence of engine speed was showed. And then, in order to clarify the mechanism of influence of engine speed, results of kinetic computations were analyzed to investigate the elementary reaction path for heat release at transient temperatures by using contribution matrix.",
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