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辛烷值对均质压燃发动机燃烧特性和性能的影响 被引量:15

Experimental Study on the Influence of Fuel Octane Number on Combustion Characteristics and Performance of HCCI Engine
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摘要 通过不同比例的正庚烷和异辛烷混合得到不同辛烷值的混合燃料,在一台单缸直喷式柴油机上研究燃料辛烷值对均质压燃发动机燃烧特性、性能和排放特性的影响.研究结果表明,燃料辛烷值增加,着火始点推迟,燃烧反应速率降低,缸内爆发压力降低.燃料辛烷值增高,均质压燃向大负荷工况拓宽,燃料辛烷值较高时,存在极限转速,辛烷值增加,极限转速降低.对于每一工况,存在一个最佳经济性的燃料辛烷值,负荷增大,最佳辛烷值增高;随着燃料辛烷值增高,发动机NO、HC和CO排放增加,尤其是HC排放增加更为明显.对于均质压燃发动机,低负荷工况适合燃用低辛烷值燃料,高负荷工况适合燃用高辛烷值燃料. By mixing iso-octane with octane number 100 and normal heptane with octane number 0, it was possible to obtain an octane rating between 0 and 100. The influence of fuel's octane number on the combustion characteristics, performance and emissions character of homogeneous charge compression ignition (HCCI) engine was investigated. The experiments were carried out in a single cylinder direct injection diesel engine. The test results show that, with the increase of the octane number, the ignition timing delayed, the combustion rate decreased, and the cylinder pressure decreased. The HCCI combustion can be controlled and the HCCI operating range is extended by burning different octane number fuel at different engine mode, whose engine burns low octane number fuel at low load mode and large octane number fuel at large load mode. There exists the optimum octane number that achieves the highest brake thermal efficiency at different mode. With the increase of the fuel octane number, NO, HC and CO emissions increased, especially for HC emissions.
出处 《燃烧科学与技术》 EI CAS CSCD 2004年第3期244-249,共6页 Journal of Combustion Science and Technology
基金 国家重点基础研究发展规划资助项目(2001CB209201).
关键词 均质压燃 辛烷值 燃烧特性 排放特性 Combustion Gas emissions Ignition
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参考文献8

  • 1Najt P M, Foster D W. Compression-ignited homogeneous charge combustion [A]. In: SAE Paper [C]. 1983,830264.
  • 2Olsson J, Tunestal P, Ulfvik J, et al. The effect of cooled EGR on emissions and performance of a turbocharged HCCI engine [A]. In: SAE Paper [C]. 2003,2003-01-0743.
  • 3Christensen M, Hultqvist A, Johansson B. Demonstrating the multi fuel capability of a homogeneous charge compression ignition engine with variable compression ratio [A]. In: SAE Paper [C]. 1999,1999-01-3679.
  • 4Kaahaaina N B, Simon A J, Caton PA, et al. Use of dynamic valving to achieve residual-affecting combustion [A].In: SAE Paper [C]. 2001,2001-01-0549.
  • 5Hideyuki Ogawa, Noboru Miyamoto, Naoya Kaneko, et al.Combustion control and operating range expansion with direct injection of reaction suppressors in a premixed DME HCCI engine [A]. In: SAE Paper [C]. 2003,2003-01-0746.
  • 6Chen Zhili, Konno Mitsuru, Oguma Mitsuhani, et al. Experimental study of CI natural-gas/DME homogeneous charge engine [A]. In: SAE Paper [C]. 2000,2000-01-0329.
  • 7Olsson J, Tunestal P, Johansson B. Cloosed-loop control of an HCCI engine [A]. In: SAE Paper [C]. 2001,2001-01-1031.
  • 8尧命发,郑尊清,秦静,汪洋,余本雄.二甲基醚/天然气双燃料均质压燃的燃烧特性[J].燃烧科学与技术,2004,10(1):51-55. 被引量:7

二级参考文献7

  • 1Shigeru Onishi,Souk Hong Jo,Katsuji Shoda,et al.Active thermo atmosphere combustion(ATAC)--a new combustion progress for internal combustion engines[A].In:SAE Paper[C].1979,790501.?A
  • 2Magnus Christensen,Anders Hultqvist.Demonstrating the multi fuel capability of a homogeneous charge compression ignition engine with variable compression ratio[A].In:SAE Paper[C].1999-01-3679.?A
  • 3Li Jian,Zhao Hua,Ladommatos Nicos.Research and development of controlled auto-ignition(CAI)combustion in a 4-stroke multi-cylinder gasoline engine[A].In:SAE Paper[C].2001-01-3608.?A
  • 4Su Wanhua,Lin Tiejian,Pei Yiqiang.A compound technology for HCCI combustion in a DI diesel engine based on the multi-pluse injection and the BUMP combustion chamber[A].In:SAE Paper[C].2003-01-0741.?A
  • 5Magnus Christensen,Bengt Johansson.Homogeneous charge compression ignitin with water injection[A].In:SAE Paper[C].1999-01-0182.?A
  • 6Chen Zhili,Mitsuru Konno,Mitsuharu Oguma,et al.Experimental study of CI natural-gas/DME homogeneous charge engine[A].In:SAE Paper[C].2000-01-0329.?A
  • 7Yao Mingfa,Zheng Zunqin,Liu Shiwen,et al.An experimental study of dimethyl ether(DME)combustion process in homogeneous charge compression ignition(HCCI)mode[A].Xi′an:The 5th Sino-Korea International Conference on Automobile Engineering[C],2002.

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