Effects of Ignition Timing and Fuel Chemical Composition on Autoignition Behavior and Knocking Characteristics under Lean Conditions

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Event
The 26th Small Powertrains and Energy Systems Technology Conference
Authors Abstract
Content
This study focused on autoignition behavior and knocking characteristics. Using an optically accessible engine, autoignition behavior was observed over the entire bore area, and the relationship between autoignition behavior and knocking characteristics was clarified on the basis of visualized combustion images and frequency analysis of the in-cylinder pressure waveform. In addition, chemical kinetic simulations were used to investigate the effects of different fuel chemical compositions on combustion and autoignition characteristics under equivalent octane ratings. The results showed that the rate of autoignition development has a significant effect on knocking intensity. In addition, the ρ1,0 mode is the dominant vibration mode caused by knocking, regardless of the location of autoignition. It can be inferred that strong knocking is caused by multiple vibration modes. Furthermore, chemical kinetic simulation results and experimental data show that different fuel chemical compositions affect the onset of autoignition.
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DOI
https://doi.org/10.4271/2022-32-0070
Pages
7
Citation
Shirane, K., Kimura, T., Nakamura, S., Furusyo, K. et al., "Effects of Ignition Timing and Fuel Chemical Composition on Autoignition Behavior and Knocking Characteristics under Lean Conditions," Advances and Current Practices in Mobility 5(5):1745-1751, 2023, https://doi.org/10.4271/2022-32-0070.
Additional Details
Publisher
Published
Jan 9, 2022
Product Code
2022-32-0070
Content Type
Journal Article
Language
English