喷油压力与喷孔参数对柴油机性能协同影响的仿真研究

刘宇,王向阳,李兴华,洪伟,李小平,解方喜

车用发动机 ›› 2023, Vol. 0 ›› Issue (2) : 11-17.

车用发动机 ›› 2023, Vol. 0 ›› Issue (2) : 11-17.
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喷油压力与喷孔参数对柴油机性能协同影响的仿真研究

  • 刘宇1,2,王向阳1,2,李兴华1,2,洪伟1,2,李小平1,2,解方喜1,2
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Simulation of Synergistic Effect of Injection Pressure and Injection Hole Parameters on Diesel Engine Performance

  • LIU Yu1,2,WANG Xiangyang1,2,LI Xinghua1,2,HONG Wei1,2,LI Xiaoping1,2,XIE Fangxi1,2
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摘要

基于田口设计,利用CONVERGE软件对一台涡轮增压柴油机进行了数值模拟,探究了喷孔数量、喷孔孔径与喷射压力对柴油机性能的协同影响。结果表明:在喷油压力过高或喷孔截面积过大的情况下,缸内压力升高率明显偏大,且压力急剧升高的时刻提前,不利于柴油机平稳运行;适当提高喷射压力、增加喷孔数且减小孔径可以促进燃料的雾化混合,加速缸内混合气燃烧,促进发动机动力性与经济性提升,降低NOx及Soot排放。对于燃油消耗率和NOx排放,喷孔数影响最为敏感,喷孔直径与喷油压力次之;而对于Soot排放,影响因素的主次关系依次是喷油压力、喷孔数、喷孔直径。通过喷射压力和喷孔参数的协同优化,发动机燃油消耗率、NOx和Soot生成量分别较原机降低了4.37 g/(kW·h),11.2%和9.14%。

Abstract

Based on Taguchi design, a turbocharged diesel engine was numerically simulated by CONVERGE software, and the synergistic effect of the number and the diameter of injection holes and the injection pressure on the performance of diesel engine was explored. The results show that the incylinder pressure rise rate is obviously large and the sharp rise timing advances under the conditions of high injection pressure or large crosssectional area of injection hole, which is not conducive to the smooth operation of diesel engine. Properly increasing the injection pressure, increasing the number of injection holes and decreasing the diameter of injection hole can promote the fuel atomization mixing, accelerate the combustion of incylinder mixture, improve the engine power performance and economy, and reduce NOx and soot emissions. For the fuel consumption rate and NOx emission, the number of injection holes is the most sensitive, followed by the diameter of injection holes and injection pressure. For the soot emission, the influencing degree from high to low is the injection pressure, the number of injection holes, and the diameter of injection holes by order. By synergistic optimization of injection pressure and injection hole parameters, the fuel consumption rate, NOx and soot generation reduce by 4.37 g/(kW·h), 11.2% and 9.14% respectively, compared with the original engine.

关键词

增压柴油机 / 喷油压力 / 喷孔参数 / 协同优化

Key words

turbocharged diesel engine / injection pressure / injection hole parameter / synergistic optimization

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刘宇,王向阳,李兴华,洪伟,李小平,解方喜. 喷油压力与喷孔参数对柴油机性能协同影响的仿真研究[J]. 车用发动机. 2023, 0(2): 11-17
LIU Yu,WANG Xiangyang,LI Xinghua,HONG Wei,LI Xiaoping,XIE Fangxi. Simulation of Synergistic Effect of Injection Pressure and Injection Hole Parameters on Diesel Engine Performance[J]. Vehicle Engine. 2023, 0(2): 11-17

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