JOURNAL ARTICLE

A Study on Homogeneous Charge Compression Ignition Gasoline Engines.

Makoto KanekoKoji MorikawaJin ItohYouhei Saishu

Year: 2003 Journal:   JSME International Journal Series B Vol: 46 (1)Pages: 31-36   Publisher: Japan Society Mechanical Engineers

Abstract

A new engine concept consisting of HCCI combustion for low and midrange loads and spark ignition combustion for high loads was introduced. The timing of the intake valve closing was adjusted to alter the negative valve overlap and effective compression ratio to provide suitable HCCI conditions. The effect of mixture formation on auto-ignition was also investigated using a direct injection engine. As a result, HCCI combustion was achieved with a relatively low compression ratio when the intake air was heated by internal EGR. The resulting combustion was at a high thermal efficiency, comparable to that of modern diesel engines, and produced almost no NOx emissions or smoke. The mixture stratification increased the local A/F concentration, resulting in higher reactivity. A wide range of combustible A/F ratios was used to control the compression ignition timing. Photographs showed that the flame filled the entire chamber during combustion, reducing both emissions and fuel consumption.

Keywords:
Homogeneous charge compression ignition Combustion Ignition system Compression ratio NOx Gasoline Valve timing Diesel fuel Thermal efficiency Automotive engineering Materials science Ignition timing Carbureted compression ignition model engine Smoke Environmental science Engine knocking Internal combustion engine Combustion chamber Chemistry Thermodynamics Engineering Physics Organic chemistry

Metrics

36
Cited By
5.58
FWCI (Field Weighted Citation Impact)
6
Refs
0.97
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Advanced Combustion Engine Technologies
Physical Sciences →  Chemical Engineering →  Fluid Flow and Transfer Processes
Vehicle emissions and performance
Physical Sciences →  Engineering →  Automotive Engineering
Combustion and flame dynamics
Physical Sciences →  Engineering →  Computational Mechanics

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