期刊文献+

热分层对HCCI燃烧过程的影响 被引量:3

Combustion Process of Homogeneous Charge Compression Ignition Under Different Thermal Stratification
下载PDF
导出
摘要 在一台经改装的单缸光学发动机上进行不同热分层下均质压燃燃烧过程实验研究.保证每循环供油量一定,燃料为正庚烷,转速为600.r/min,进气压力为0.1.MPa,进气温度分别为95.℃和125.℃;循环冷却水温度分别为55.℃、65.℃和85.℃.研究结果表明,冷却水温度和进气温度的变化,改变了缸内温度分布,对HCCI这种受控于化学反应动力学的燃烧过程有很大影响,引起微弱自燃着火、局部燃烧淬熄和相对均匀燃烧等不同燃烧过程;缸内热分层越大,自燃着火传播速度越慢,燃烧的不均匀性越大;增大缸内热分层,可以降低燃烧反应速率,具有拓宽HCCI运转工况范围的潜力. To study the combustion processes of homogeneous charge compression ignition(HCCI)under different thermal stratification, the tests were carried out on a modified single-cylinder optical engine. The fuel quantity per cycle(Qcyc)Was fixed at 17.3 mg. The intake pressure and speed were fixed at 0.1 MPa and 600 r/min, respectively. In order to explore natu- ral thermal stratification by different heat-transfer rates, coolant/water temperature and intake temperature(Tin)were varied. The coolant temperature was set to be 55 ℃, 65 ℃ and 85 ℃, and the intake temperature was set to be 95 ℃ and 125 ℃. The results show that, with the change of coolant water and inlet temperature, in-cylinder temperature distribution will be changed, leading to different combustion processes, such as faint auto-ignition, partial combustion quench and com- parative homogeneous combustion, which indicates that in-cylinder temperature distribution has strong effect on HCCI combustion processes. With the increase of thermal stratification, combustion rate decreases, while combustion heteroge- neity increases, which will extend the operating range of HCCI.
出处 《燃烧科学与技术》 EI CAS CSCD 北大核心 2010年第4期335-340,共6页 Journal of Combustion Science and Technology
基金 国家重点基础研究发展计划(973)资助项目(2007CB210002) 天津市科技计划资助项目(08QTPTJC28900)
关键词 均质压燃 光学诊断 化学发光 热分层 燃烧过程 homogeneous charge compression ignition optical diagnostics chemiluminescence thermal stratification combustion process
  • 相关文献

参考文献11

  • 1刘海峰,张波,尧命发,郑尊清,陈征.高辛烷值燃料对HCCI增压发动机燃烧和排放影响的试验研究[J].内燃机学报,2008,26(2):106-115. 被引量:11
  • 2陈征,尧命发,郑尊清,张波,邢元.双燃料HCCI燃烧的优化策略[J].燃烧科学与技术,2006,12(2):142-146. 被引量:2
  • 3Noguchi M, Tanaka Y, Tanaka T, et al. A study on gasoline engine combustion by observation of intermedi- ate reactive products during combustion [C]//SAE Paper. 1979, 790840.
  • 4王忠,袁银南,梅德清,孙平,历宝录.生物柴油燃烧过程内窥镜高速摄影试验研究[J].内燃机学报,2007,25(2):163-166. 被引量:21
  • 5王丽雯,何旭,王建昕,安新亮.用双色法研究汽油机燃烧火焰的温度分布[J].燃烧科学与技术,2007,13(4):293-298. 被引量:11
  • 6Sjoberg M, Dec J, Babajimopoulos A, et al. Comparing enhanced natural thermal stratification against retarded combustion phasing for smoothing of HCCI heat release rates[C]//SAE Paper. Detroit, MI, USA, 2004, 2004- 01-2994.
  • 7Dec J E. Advanced compression-ignition enginesunderstanding the in-cylinder processes [J]. Proc Combustlnst, 2009, 32(2): 2727-2742.
  • 8Hwang W, Dec J, Sjoberg M. Spectroscopic and chemical-kinetic analysis of the phases of HCCI autoignition and combustion for single-and two-stage ignition fuels [J]. Combustion and Flame, 2008, 154: 387-409.
  • 9Sjoberg M, Dec J, Cemansky N. Potential of thermal stratification and combustion retard for reducing pres- sure-rise rates in HCCI engines, based on multi-zone modelling and experiments [C]//SAE Paper. Detroit, MI, USA, 2005, 2005-01-0113.
  • 10Grenda J M. Numerical modeling of charge stratification for the combustion control of HCCI engines [C]//SAE Paper. Detroit, MI, USA, 2005, 2005-01-3722.

二级参考文献41

  • 1王忠,袁银南,历宝录,梅德清,孙平.生物柴油的排放特性试验研究[J].农业工程学报,2005,21(7):77-80. 被引量:41
  • 2梁桂华,赵宇,许诺,张卫东.柴油作为内燃机PIV测试中示踪粒子的论证分析[J].内燃机工程,2005,26(6):22-25. 被引量:5
  • 3高霞,童海英,李金霞.纳米氧化铝[J].化学教学,2006(2):26-28. 被引量:16
  • 4张惠明,赵奎翰,息树和,魏建勤,刘文胜,周作恒.直喷式柴油机燃烧室形状对碳粒形成过程影响的试验研究[J].内燃机学报,1996,14(3):286-294. 被引量:8
  • 5Christensen M,Johansson B,Amneus P,et al.Supercharged homogeneous charge compression ignition[C] //SAE Paper.Detroit,Michigan,1998,980787.
  • 6Dec J.A computational study of the effects of low fuel loading and EGR on heat release rates and combustion limits of HCCI engines[C] //SAE Paper.Detroit,Michigan,2002,2002-01-1309.
  • 7Yao Mingfa,Zheng Zunqing,Qin Jing.A study on the HCCI combustion process of dimethyl ether and natural gas dual fueled engine[C]//The Fourth Asian-Pacific Conference on Combustion (ASPACC 2003).Nanjing,2003:313-317.
  • 8Chen Zhili,Konno Mitsuru,Oguma Mitsuharu,et al.Experimental study of CI natural-gas/DME homogeneous charge engine[C] //SAE Paper.Detroit,Michigan,2000,2000-01-0329.
  • 9Hideyuki 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[C] // SAE Paper.Detroit,Michigan,2003,2003 -01-0746.
  • 10Toshio Shudo,Yoshitaka Ono.HCCI combustion of hydrogen,carbon monoxide and dimethyl ether (DME)[C] //SAE Paper.Detroit,Michigan,2002,2002-01-0112.

共引文献37

同被引文献46

  • 1吕兴才,陈伟,黄震.废气再循环和发动机运转参数对不同辛烷值燃料HCCI燃烧的影响[J].内燃机学报,2005,23(2):137-146. 被引量:12
  • 2黄锦成,刘海峰,尧命发,张波.进气温度和燃料辛烷值对HCCI发动机排放的影响[J].车用发动机,2006(6):29-34. 被引量:3
  • 3YAO Mingfa ,ZHENG Zhaolei, LIU Haifeng, et al. Progress and Recent Trends in Homogeneous Charge Compression Ignition ( HCCI ) Engines [ J]. Progress in Energy and Combustion Science, 2009,35 (5) :398-437.
  • 4NICK M. MARINOV. A Detailed Chemical Kinetic Model for High Temperature Ethanol Oxidation. Lawrence Livermore National Laboratory, P. O. Box 808, Livermore, CA 94550.
  • 5Dec J E, Kelly-Zion P L. The effects of injection timing and diluent addition on late-combustion soot burnout in a DI diesel engine based on simultaneous 2-D imaging of OH and soot[C]// SAE Paper. Detroit, MI, USA, 2000, 2000-01-0238.
  • 6Yao Mingfa, Zhang Quanchang, Liu Haifeng, et al. Diesel engine combustion control: Medium or heavy EGR?[C] // SAE Paper. Detroit, MI, USA, 2010, 2010-01-1125.
  • 7Eckbreth A C. Effects of laser-modulated particle incan- descence on Raman scattering diagnostics[J]. Appl Phys, 1977, 48(11): 4473-4479.
  • 8Melton A L. Soot diagnostics based on laser beating [J]. ApplOptics, 1984, 23 (13) : 2201-2208.
  • 9Zhao H, Ladommatos N. Optical diagnostics for soot and temperature measurement in diesel engines [J]. Prog Energy CombustSci, 1998, 24(3): 221-255.
  • 10Schulz C, Kock B F, Hofmann M, et al. Laser- induced incandescence: Recent trends and current ques- tions[J].ApplPhysB, 2006, 83(3): 333-354.

引证文献3

二级引证文献9

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部