期刊文献+

Numerical study on combustion of diluted methanol-air premixed mixtures 被引量:1

Numerical study on combustion of diluted methanol-air premixed mixtures
原文传递
导出
摘要 The effect of nitrogen dilution on the premixed combustion characteristics and flame structure of laminar premixed methanol-air-nitrogen mixtures are analyzed numerically based on an extended methanol oxidation mechanism. The laminar burning velocities, the mass burning fluxes, the adiabatic flame temperature, the global activation temperature, the Zeldovich number, the effective Lewis number and the laminar flame structure of the methanol-air-nitrogen mixtures are obtained under different nitrogen dilution ratios. Comparison between experiments and numerical simulations show that the extended methanol oxidation mechanism can well reproduce the laminar burning velocities for lean and near stoichiometric methanol-air-nitrogen mixtures. The laminar burning velocities and the mass burning fluxes decrease with the increase of nitrogen dilution ratio and the effect is more obvious for the lean mixture. The effective Lewis number of the mixture increases with the increase of nitrogen dilution ratio, and the diffusive-thermal instability of the flame front is decreased by the nitrogen addition. Nitrogen addition can suppress the hydrodynamic instability of methanol-air-nitrogen flames. The decrease of the mole fraction of OH and H is mainly responsible for the suppressed effect of nitrogen diluent on the chemical reaction in the methanol-air-nitrogen laminar premixed flames, and the NOx and formaldehyde emissions are decreased by the nitrogen addition. The effect of nitrogen dilution on the premixed combustion characteristics and flame structure of laminar premixed methanol-air-nitrogen mixtures are analyzed numerically based on an extended methanol oxidation mechanism. The laminar burning velocities, the mass burning fluxes, the adiabatic flame temperature, the global activation temperature, the Zeldovich number, the effective Lewis number and the laminar flame structure of the methanol-air-nitrogen mixtures are obtained under different nitrogen dilution ratios. Comparison between experiments and numerical simulations show that the extended methanol oxidation mechanism can well reproduce the laminar burning velocities for lean and near stoichiometric methanol-air-nitrogen mixtures. The laminar burning velocities and the mass burning fluxes decrease with the increase of nitrogen dilution ratio and the effect is more obvious for the lean mixture. The effective Lewis number of the mixture increases with the increase of nitrogen dilution ratio, and the diffusive-thermal instability of the flame front is decreased by the nitrogen addition. Nitrogen addition can suppress the hydrodynamic instability of methanol-air-nitrogen flames. The decrease of the mole fraction of OH and H is mainly responsible for the suppressed effect of nitrogen diluent on the chemical reaction in the methanol-air-nitrogen laminar premixed flames, and the NOx and formaldehyde emissions are decreased by the nitrogen addition.
机构地区 Xi An Jiao Tong Univ
出处 《Chinese Science Bulletin》 SCIE EI CAS 2010年第9期884-891,共8页
基金 supported by the National Natural Science Foundation of China (Grant Nos. 50521604 and 50876086)
关键词 METHANOL DILUTION PREMIXED COMBUSTION numerical analysis methanol dilution premixed combustion numerical analysis
  • 相关文献

参考文献28

  • 1Liao S Y,,Jiang D M,Cheng Q, et al.Effect of methanol addition into gasoline on the combustion characteristics at relatively low tempera-tures. Energ Fuel . 2006
  • 2Bromberg L,Cohn D R.Effective Octane and Efficiency Advantages of Direct Injection Alcohol Engines. MIT Plasma Science and Fusion Center Report PSFC JA-08-02 .
  • 3Gülder  L.Laminar burning velocities of methanol, isooctane and isooctane/methanol blends. Combustion Science and Technology . 1983
  • 4Kee R J,Rupley F M,Miller J A.CHEMKIN II: A FORTRAN Chemical Kinetics Package for the Analysis of Gas Phase Chemical Kinetics. Report SAND89-8009B, Sandia National Laboratories . 1993
  • 5Kee R J,Dixon-Lewis G,Warnatz J, et al.A FORTRAN Computer Code Package for the Evaluation of Gas-Phase, Multicomponent Transport Properties. Report SAND86-8246, Sandia National Labo-ratories . 1992
  • 6Li J,Zhao Z,Kazakov A, et al.A comprehensive kinetic mechanism for CO, CH2O, and CH3OH combustion. International Journal of Chemical Kinetics . 2007
  • 7Kong S C,Sun Y,Reitz R D.Modeling diesel spray flame lift-off, sooting tendency and NOx emissions using detailed chemistry with phenomenological soot models. Journal of Engineering for Gas Turbines and Power . 2007
  • 8Bromberg L.Benchmarking of Alcohol Chemical Kinetic Mecha-nism for Laminar Flame Speed Calculations. MIT Plasma Science and Fusion Center Report PSFC JA-08-10 .
  • 9Reynolds W C.The Element Potential Method for Chemical Equilib-rium Analysis: Implementation in the Interactive Program STANJAN. .
  • 10Kadowaki S,Hasegawa T.Numerical simulation of dynamics of premixed flames: Flame instability and vortex-flame interaction. Progr Energ Combust Sci . 2005

同被引文献2

引证文献1

二级引证文献5

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