Optimising microscopic spray characteristics and particle emissions in a dual-injection Spark Ignition (SI) engine by changing GDI injection pressure

Li, Xiang, Li, Dayou, Yiqiang, Pei and Peng, Zhijun (2022) Optimising microscopic spray characteristics and particle emissions in a dual-injection Spark Ignition (SI) engine by changing GDI injection pressure. International Journal of Engine Research . ISSN 1468-0874

Full content URL: https://doi.org/10.1177%2F14680874221082793

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Optimising microscopic spray characteristics and particle emissions in a dual-injection Spark Ignition (SI) engine by changing GDI injection pressure
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Abstract

Regarding reducing particle emissions from dual-injection spark ignition engines, most of the existing research focused on the benefits of using alcohol fuels. However, a comprehensive study of the effects of fuel injection pressure on micro- scopic spray characteristics and particle emissions in dual-injection spark ignition engines fuelled with gasoline has not been reported before. In this paper, with the assistance of phase Doppler particles analyser system and fast particle ana- lyser, a study of optimising microscopic spray characteristics and particle emissions in a dual-injection spark ignition engine fuelled with gasoline by changing GDI injection pressure was conducted. The results show that by increasing injection pressure from 5.5 to 18 MPa, both normal and tangential components of droplet velocity increase, but the pos- sibility of spray impingement would not increase a lot. Higher injection pressure would increase the probability of small droplets, and more droplets would collapse with a mode of continuous ripping or break down abruptly. From jet’s cen- tral axis to sides, Sauter mean diameter increases first, then reduces outside the spray boundary. Increasing injection pressure from 5.5 to 18 MPa reduces total particle number concentration, which is 53.98% and 45.44% at 2 bar and 10 bar, respectively. Meanwhile, the peak of particle number distribution curve decreases from 3.01 3 106 to
1.43 3 106 at 2 bar, whilst reducing from 1.08 3 106 to 5.33 3 105 at 10 bar. Overall, this paper comprehensively analy- ses the effects of fuel injection pressure on microscopic spray characteristics and particle emissions, whilst offering a practical approach to reduce particle emissions in dual-injection SI engines fuelled with gasoline.

Keywords:Dual-injection spark ignition (SI) engine, particle emissions, microscopic spray characteristics, injection pressure
Subjects:H Engineering > H300 Mechanical Engineering
Divisions:College of Science > School of Engineering
ID Code:48397
Deposited On:02 Mar 2022 12:43

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