Abstract
Experimental and numerical studies are performed on auto ignition and extinction of non-premixed n-dodecane spray cool flames. A novel phenomenon of repetitive auto ignition extinction instability of near-limit non-premixed spray cool flames is observed and examined. The repeated auto ignition and extinction cycles are mostly the results of the competition between time scales of fuel spray vaporization and low-temperature oxidation, where the dynamics of large droplets in poly disperse spray play an important role. It is also found that with the increase of the oxygen mole fraction or the oxidizer temperature, the spray cool flame stabilization time increases, and the cycles of auto ignition and extinction become less frequent. Over a critical oxidizer temperature and oxygen mole fraction, the repetitive auto ignition and extinction instability disappears, and a stable spray non-premixed cool flame can be observed. A one-dimensional two-phase model with detailed chemistry is employed to reveal the spray flame structure and dynamics. It is shown that the large droplets can penetrate the flame front and result in the auto ignition-extinction instability. The experimental evidence and numerical results provide the insights of this novel phenomenon of repetitive auto ignition-extinction instability of near-limit non-premixed spray cool flames. The results will contribute to the development of advanced low-temperature combustion engines and spray combustion models.
| Original language | English (US) |
|---|---|
| Title of host publication | AIAA SciTech Forum and Exposition, 2023 |
| Publisher | American Institute of Aeronautics and Astronautics Inc, AIAA |
| ISBN (Print) | 9781624106996 |
| DOIs | |
| State | Published - 2023 |
| Event | AIAA SciTech Forum and Exposition, 2023 - Orlando, United States Duration: Jan 23 2023 → Jan 27 2023 |
Publication series
| Name | AIAA SciTech Forum and Exposition, 2023 |
|---|
Conference
| Conference | AIAA SciTech Forum and Exposition, 2023 |
|---|---|
| Country/Territory | United States |
| City | Orlando |
| Period | 1/23/23 → 1/27/23 |
Bibliographical note
Publisher Copyright:© 2023, American Institute of Aeronautics and Astronautics Inc, AIAA. All rights reserved.
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