Analysis of the Characteristics of HCCI Combustion and ATAC Combustion Using the Same Test Engine
Kentaro Goto, Akira Iijima, Kōji Yoshida, Hideo SHOJI
Abstract
Kentaro Goto, Akira Iijima, Kōji Yoshida, Hideo SHOJI
Abstract
Homogeneous Charge Compression Ignition (HCCI) combustion has attracted considerable interest in recent years as a new combustion concept for internal combustion engines. On the other hand, two combustion concepts proposed for two-cycle spark-ignition (SI) engines are Active Thermo-Atmosphere Combustion (ATAC) and Activated Radical (AR) combustion. The authors undertook this study to examine the similarities and differences between HCCI combustion and ATAC (AR) combustion. Differences in the low-temperature oxidation reaction behavior between these two combustion processes were made clear using one test engine.
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Homogeneous Charge Compression Ignition (HCCI) combustion has attracted considerable interest in recent years as a new combustion concept for internal combustion engines. On the other hand, two combustion concepts proposed for two-cycle spark-ignition (SI) engines are Active Thermo-Atmosphere Combustion (ATAC) and Activated Radical (AR) combustion. The authors undertook this study to examine the similarities and differences between HCCI combustion and ATAC (AR) combustion. Differences in the low-temperature oxidation reaction behavior between these two combustion processes were made clear using one test engine.
Key concepts: Homogeneous charge compression ignition, Combustion, Automotive engineering, Environmental science, Combustion chamber, Engineering, Chemistry, Organic chemistry