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甲烷HCCI燃烧反应机理简化与分析 被引量:9

Reduction and Analysis of Kinetic Model for Methane HCCI Combustion
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摘要 通过分析系统温度变化与主要中间产物生成率,以敏感度分析为基础对GRI-MECH3.0机理进行简化,最后得出一个包含25种组分、36个反应的简化机理。此简化机理适用于天然气HCCI模式燃烧着火相位研究,与详细机理在着火点预测上吻合良好。经验证,在较广的初始压力、温度、转速、压缩比、空燃比变动范围内可以保证与详细机理相近的精度。同时在简化过程中梳理出着火延迟期的关键反应。 The natural gas HCCI combustion is investigated numerically and a reduced chemical kinetic model for GRI-MECH3.0 is described.By analyzing the system temperature and some rate of production of reactants,a 36-step,25-species reduced mechanism was finally acquired.The ignition delay predicted by the reduced mechanism show great agreement with detailed mechanism in a wide range of various temperature,pressures,equivalence ratios,engine speed and air/fuel ratio.The studies have shown that some reactions play an important role during the ignition delay.
出处 《武汉理工大学学报》 CAS CSCD 北大核心 2012年第1期71-74,共4页 Journal of Wuhan University of Technology
基金 留学回国人员科研启动基金(教外司留[2011]1139号)
关键词 天然气 HCCI 敏感度分析 机理简化 着火延迟 natural gas HCCI sensitivity analysis reduced mechanism ignition delay
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参考文献11

  • 1J Jan Ola Olsson, Per Tunestal, Bengt Johansson. Compression Ratio Influence on Maximum Load of a Natural Gas Fu- eled HCCI Engine[C]//SAE Paper. Detroit:[s. n.],2002-01 0111.
  • 2Kusaka J,Koichiro Tsuzuki,Daisho Y, et al. A Numerical Study on Combustion and Exhaust Gas Emissions Characteris- tics of a Dual-fuel Natural Gas Engine Using a Multi-dimensional Model Combined with Detailed Kinetics[C]//SAE Pa- per. Detroit:[s. n. ],2002 01-1750.
  • 3吕林,温苗苗.CNG发动机工作过程的三维数值模拟[J].武汉理工大学学报(交通科学与工程版),2004,28(6):811-813. 被引量:13
  • 4韩健,郎静.天然气HCCI发动机燃烧和排放的CFD研究[J].拖拉机与农用运输车,2006,33(5):24-27. 被引量:5
  • 5Daesu Jun, Norimasa Lida. A Study of High Combustion Efficiency and Low CO Emission in a Natural Gas HCCI Engine [C]//SAE Paper. Detroit.. [s. n. ],2004-01-1974.
  • 6Ryuichi Tominaga,Satoshi Morimoto,et al. Effects of Heterogeneous EGR on the Natural Gas Fueled HCCl Engine U- sing Experiments, CFD and Detailed Kineties[C]//SAE Paper. Detroit: [s. n.],2004-01-0945.
  • 7Curran H J, Gaffuri P,Pitz W J, et al. A Comprehensive Modeling Study of n-Heptane Oxidation[J]. Combustion and Flame, 1998,114 : 149-177.
  • 8Turdnyi T. Sensitivity Analysis of Complex Kinetic Systems: Tools and Applications[J]. J Math Chem,1990(5):203-248.
  • 9Turcinyi T. Applications of Sensitivity Analysis to Combustion Chemistry [J]. Reliability Engineering and System Safe- ty,1997,57: 41-48.
  • 10苏岭,周龙保,汪映,蒋德明,李维,钟辉.空燃比对准均质充量压缩点燃天然气发动机低负荷排放性能的影响[J].兵工学报,2006,27(5):895-898. 被引量:2

二级参考文献21

  • 1张晓宇,苏万华,裴毅强,赵昌普,林铁坚,赵华.Bump环强化柴油混合过程的数值模拟研究[J].内燃机学报,2005,23(1):1-9. 被引量:14
  • 2黄佐华,蒋德明,周龙保,潘克煜.火花点火发动机未燃碳氢预测模型[J].燃烧科学与技术,1995,1(1):16-26. 被引量:3
  • 3Seref Soylu. Autoignition modeling of natural gas for engine modeling programs: an experimental and modeling study:[Dissertation]. Ames:Iowa State University, 2001
  • 4Qian Zuoqin. Instantaneous temperature filed numerical simulation of the coupling system of diesel engine heated component. Journal of Wuhan University of Technology (Transportation Science & Engineering),2003,27(6):897~900
  • 5SCOTr B F,REY A. Experiment and Simulated Results Detailing the Sensivity of Natural Gas HCCI Engines to Fuel Composition[J]. SAE Paper,2001-01-3609.
  • 6SALVADOR M A ,DANIEL L F. A Multi-Zone Model for Prediction of HCCI Combustion and Emissions[ J ]. SAE Paper,2000-01-0327.
  • 7MARIA U A,PETER G. Formation and Destruction of CH20 in the Exhaust System of a Gas Engine[J]. Environ Sci Technol,2003 ,37 :4512 -4516.
  • 8HAN Z, REITZ R D. Turbulence Modeling of Internal Combustion Engines Using RNG k-ε Models[ J]. Combustion Science and Technology, 1995,106(46) :267 -295.
  • 9WU Kuo-chun, SIMONE H, MICHAEL G N. Chemical Kinetic Modeling of Exhaust Hydrocarbon Oxidation [ J ]. Combustion and Flame, 1995 (1(30) : 193-201.
  • 10SALVADOR M A, DANIEL L F, JOEL M F, et al. A Sequential Fluid-Mechanic Chemical-Kinetic Model of Propane HCCI Combustion [ J]. SAE Paper,2001-01-1027.

共引文献17

同被引文献48

  • 1姚勇.CNG发动机和汽油机燃烧的比较分析[J].车用发动机,2005(5):31-33. 被引量:23
  • 2韩健,郎静.天然气HCCI发动机燃烧和排放的CFD研究[J].拖拉机与农用运输车,2006,33(5):24-27. 被引量:5
  • 3乔瑜,徐明厚,姚洪.基于敏感性分析的甲烷反应机理优化简化[J].华中科技大学学报(自然科学版),2007,35(5):85-87. 被引量:17
  • 4陈义良,董刚,李艺.燃料氧化反应动力学机理简化的研究进展.见:中国工程热物理学会燃烧学学术会议论文集,2000.47-52.
  • 5Turanyi T.Sensitivity Analysis of Complex Kinetic Systems:Tools and Application[J].Journal Mathematical Chemis-try,1990(5):203-248.
  • 6Turanyi T.Applications of Sensitivity Analysis to Combustion Chemistry[J].Reliability Engineering and System Safety,1997,57:41-48.
  • 7Ungut A.CFD Simulation and Detailed Chemical Modeling of Alkane Autoignition near a Heated Metal Surface[R].Lon-don:[s.n.],2001.
  • 8Song S C,Reitz R D.Numerical Study of Premixed HCCI Engine Combustion and Its Sensitivity to Computational Meshand Model Uncertainties[J].Combust Theory Modeling,2003(7):417-433.
  • 9Fanhua Ma, Yu Wang, Haiquan Liu, et al. Effects of Hydrogen Addition on Cycle - by - Cycle Variations in a Lean Burn Natural Gas Spark - Ignition Engine [ J ]. International Jour- nal of Hydrogen Energy,2008,33 (2) : 823 - 831.
  • 10侯明阳.混合气均质压缩燃烧试验装置的研制及燃烧仿真[D].杭州:浙江大学,2012.

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