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冷起动两次喷油直喷汽油机的缸内可视化与排放

Visualization and emission for a GDI engine using double injection at cold start in-cylinder process
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摘要 以可视化方法,试验研究了直喷(GDI)汽油机冷起动工况燃油两次喷射策略的污染物排放。采用光学单缸机和两台高速摄像机,同时从相互垂直的两个方向,记录燃油在气缸内的喷雾与燃烧过程,以燃烧分析仪分析燃烧稳定性,通过碳烟瞬态采集系统,分别用CLD500型和HFR500型火焰离子化检测仪(FID),对碳烟、NO_x和HC进行记录分析。结果表明:在冷起动工况,第2次喷油正时过晚,燃油撞击活塞顶形成油膜,雾化不充分,会导致碳烟排放过高;第2次喷油正时提前,燃烧稳定性提高;增加第一次喷射的燃油质量比,可改善碳烟、NO_x和HC排放,但略降低燃烧稳定性。 Pollutant emissions for a Gasoline Direct Injection(GDI)engine with double injection at cold start incylinder process were investigated using a visualization method.The spray and combustion images in an optical single cylinder engine were recorded simultaneously from two directions perpendicular to each other utilizing two high-speed cameras.A combustion analyzer and a micro-soot-sensor were used to analyse combustion stability and soot emission.A CLD500type fast NOx system and a HFR500type fast Flame Ionization Detector(FID)system were used to sample nitrogen oxide and hydrocarbon emission.The results show that the main reason for high soot emission caused by impinging more fraction fuel on piston crown and forming oil film under cold start condition using delayed second injection timing.While,advancing second fuel injection improves combustion stability.Increasing first injection fraction decreases the emissions of soot,NOx and HC with a slight negative effect on the combustion stability.
作者 宫艳峰 宋志平 李显 张连方 窦慧莉 李华 夏春雨 于拓舟 GONG Yanfeng;SONG Zhiping;LI Xian;ZHANG Lianfang;DOU Huili;Li hua;XIA Chunyu;YU Tuozhou(R &D Center, First Automobile Workshop, Changchun 130011, China)
出处 《汽车安全与节能学报》 CAS CSCD 2017年第4期412-418,共7页 Journal of Automotive Safety and Energy
基金 中国第一汽车集团公司科技创新项目(kg13007)
关键词 汽油机 直喷(GDI) 冷起动 两次喷射 燃烧稳定性 可视化 污染物排放 engines gasoline direct injection (GDI) cold start double injection combustion stability visualization pollutant emission
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  • 1雷卫,苏万华.一种新的HCCI柴油机燃油喷雾特性的PLIF法测试装置[J].汽车工程,2004,26(4):405-408. 被引量:7
  • 2Zhao F, Lai M C, Harrington D L. Automotive Spark-ignited Direct-injection Gasoline Engines [J]. Progress in Energy and Combustion Science 1999, 25: 437-562.
  • 3Horie K, Takahashi H, Akazaki S. Emission Re- duction During Warm-up Period by Incorporating a Wall-wetting Fuel Model on the Fuel Model on the Fuel Injection Strategy During Engine Starting [J]. SAE Paper, 952478,1995.
  • 4I.ee S, McGee J, Quay B, et al. A Comparison of Fuel Distribution and Combustion during Engine Cold Start for Direct and Port-fuel Injection Sys- tems[J]. SAE Paper, 1999-01-1490, 1999.
  • 5Lee S, Tong K, Quay B, et al. Effects of Swirl and Tumble on Mixture Preparation during Cold Start of a Gasoline Direct-injection Engine[J]. SAE Pa- per, 2000-01-1900, 2000.
  • 6Yamada T, Gardner D, Bruno B, et al. The Effects of Engine Speed and Injection Pressure Transients on Gasoline Direct Injection Engine Cold Start[J]. SAE Paper, 2002-01-2745, 2002.
  • 7Landenfeld T, Kufferath A, Gerhardt J. Gasoline Direct Injection - SULEV Emission Concept [J]. SAE Paper, 2004-01-0041, 2004.
  • 8Xu Z, Yi J, Wooldridge S, et al. Modeling the Cold Start of the Ford 3. 5L V6 EcoBoost Engine[J]. SAE Paper, 2009-01-1493, 2009.
  • 9Whitaker P, Shen Y, Fuch H, et al. Development of the Combustion System for a Flexible Fuel Tur- bocharged Direct Injection Engine[J]. SAE Paper, 2010-01-0585, 2010.
  • 10杨嘉林.汽车发动机研制的新动向──缸内直喷式汽油机[J].中国机械工程,1997,8(1):9-11. 被引量:4

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