摘要
In consideration of the problem of fuel film on the cylinder wall in an internal combustion engine,the process of droplet impact was simulated in this paper. A test system was designed and developed in which a gas-driven single-droplet impacted the hot wall at high speeds.The effect of high-speed droplet impact on the secondary atomization was studied,and the influence of wall temperature on the impact effect was also considered. Compared with the Weber number range of mostly 20-1000 from current studies on droplet impact,the speed of droplets accelerated to 10.8m/s by using the driving gas(i.e.,nitrogen),thereby generating droplets with a Weber number of up to 4057. The phenomenon of jet breakage occurred when the Weber number grew to a certain value,so the thermal effect was not the only inducing factor. As the Weber number grew,the jet height and the number of resulting secondary droplets increased accordingly. With the growth of wall temperature,the Weber number decreased as the central jet occurred. Under the condition of high Weber number,no obvious Leidenfrost phenomenon occurred at the temperature much higher than the Leidenfrost temperature of water.
投稿的翻译标题 | Phenomenon of Central Jet Breakage Induced by High-Weber-Number Droplet Impact |
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源语言 | 繁体中文 |
页(从-至) | 197-203 |
页数 | 7 |
期刊 | Ranshao Kexue Yu Jishu/Journal of Combustion Science and Technology |
卷 | 25 |
期 | 3 |
DOI | |
出版状态 | 已出版 - 15 6月 2019 |
关键词
- Central jet
- Droplet impact
- High-Weber-number
- Wall temperature