Spray characteristics of elliptical orifice spray in diesel engine under air movement conditions

IF 2.2 4区 工程技术 Q2 ENGINEERING, MECHANICAL
Hekun Jia, Xiangyu Cao, Bifeng Yin, Zhuangbang Wei
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Abstract

The development of high-quality mixture is a critical requirement for achieving high-efficiency and low-emission diesel engines, and fuel injection system performance improvement and in-cylinder airflow organization are crucial ways for achieving high-quality mixture. The elliptical nozzle is used as the research object in this research, and numerical simulation is utilized to investigate the effect of different airflow speeds and directions on the atomization characteristics of the elliptical nozzle jet, in order to provide a theoretical basis for the engineering application of the elliptical nozzle in diesel engines. The results show that under the same airflow conditions, the vertical penetration distance of the spray decreases while the horizontal penetration distance increases with the use of elliptical orifices, the surface wave perturbation on the windward side is more violent, and reduce spray field the Sauter Mean Diameter (SMD). The spray projected area grew by 13.5%, the spray SMD dropped by 14.8%, and the vertical penetration distance of the spray with elliptical orifices fell by 18% with an increase in airflow velocity from 0 to 20 m/s. When the airflow direction and the spray direction were at a 90° angle and the SMD was lower than that of the circular orifice by 12.9%. The angle between the airflow direction and the short axis of the elliptical orifice was 30°when the spray projection area was larger, the perturbation of the spray body was more intense, and the surface wave amplitude was larger.
空气流动条件下柴油发动机中椭圆孔喷雾的喷雾特性
发展优质混合气是实现柴油发动机高效率和低排放的关键要求,而燃油喷射系统性能的提高和缸内气流组织是实现优质混合气的重要途径。本研究以椭圆喷嘴为研究对象,利用数值模拟研究了不同气流速度和方向对椭圆喷嘴射流雾化特性的影响,以期为椭圆喷嘴在柴油机中的工程应用提供理论依据。结果表明,在相同气流条件下,使用椭圆喷口后,喷雾的垂直穿透距离减小,而水平穿透距离增大,迎风面的表面波扰动更加剧烈,并减小了喷雾场的萨特平均直径(SMD)。当气流速度从 0 m/s 增加到 20 m/s 时,喷雾投影面积增加了 13.5%,喷雾 SMD 下降了 14.8%,使用椭圆形喷孔的喷雾垂直穿透距离下降了 18%。当气流方向与喷雾方向成 90° 角时,SMD 比圆形喷孔低 12.9%。气流方向与椭圆形喷口短轴的夹角为 30°时,喷射面积更大,喷射体的扰动更强烈,表面波振幅更大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Engine Research
International Journal of Engine Research 工程技术-工程:机械
CiteScore
6.50
自引率
16.00%
发文量
130
审稿时长
>12 weeks
期刊介绍: The International Journal of Engine Research publishes high quality papers on experimental and analytical studies of engine technology.
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