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直喷天然气发动机燃烧效率分析(英文)

Analysis of Combustion Efficiency in Direct Injection Natural Gas Engine
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摘要 利用快速压缩装置对直喷天然气发动机的燃烧效率进行了分析。在宽广的当量比范围内 ,分析了三种燃料喷射方式下和均匀混合气燃烧时的燃烧效率。结果表明 ,燃油喷射方式下的燃烧效率在 0 .2~ 0 .9当量比范围内均具有较高的数值并与喷射方式无关 ;在当量比小于 0 .2和大于 0 .9时 ,由于 CO的原因 ,使燃烧效率降低。均匀混合气燃烧时 ,燃烧效率在当量比大于 0 .7时较高 ,而当量比小于 0 .7时 ,由于很高的未燃甲烷的生成使燃烧效率损失较大。燃料喷射燃烧与均匀混合气燃烧相比 ,维持高燃烧效率的当量比范围宽。因未燃甲烷的生成而造成的燃烧效率的损失与喷油时刻无关 ,因 Investigation of combustion efficiency of direct injection natural gas engine is carried out using a rapid compression machine. Combustion efficiency of three types of injection modes and homogeneous mixture combustion are analyzed over the wide range of equivalence ratio. The results show that in the case of fuel injection modes,high combustion efficiency is observed when the equivalence ratio is in the range from 0.2 to 0.9 regardless of fuel injection modes.Obvious loss of combustion efficiency occurs when <0.2 and >0.9.For homogeneous mixture combustion,high combustion efficiency is found when >0.7 and large reduction of combustion efficiency occurs when <0.7 due to the higher unburned methane caused by bulk quenching. Fuel injection maintains high combustion efficiency over the wide range of equivalence ratio compared with that of homogeneous mixture combustion.The study also shows that little influence of unburned methane on the loss of combustion efficiency is observed with fuel injection timing but the reduction of combustion efficiency is found in the case of late injection timing.
出处 《燃烧科学与技术》 EI CAS CSCD 2002年第4期369-376,共8页 Journal of Combustion Science and Technology
基金 国家自然科学基金杰出青年基金项目 (5992 561 7)
关键词 天然气 发动机 燃烧效率 燃烧产物 燃油喷射 甲烷 combustion efficiency natural gas DI engine combustion products
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参考文献18

  • 1[1]Ben L,Charnay G,Truquet R. Influence of air/fuel ratio on cyclic variation and exhaust emission in natural gas SI engine[A].SAE Paper[C].992901,1999
  • 2[2]Hassaneen A E,Varde K S,Bawady A A.Study of the flame development and rapid burn durations in a lean-burn fuel injected natural gas SI engine[A].SAE Paper[C]. 981384,1998
  • 3[3]Liu Z, Karim G A.Simulation of combustion process in gas fuelled diesel engines[A].Proc Instn Mech Engrs[C].1997,211(A2):159-169.
  • 4[4]Roethlisberger R P,Leyland G,Favrat D.Study of a small size cogeneration gas engine in stoichiometric and lean burn modes:experimentation and simulation[A].SAE Paper[C].982451,1998
  • 5[5]Edward R,Rosca R,Gaiginschi R.Influence of fuel injection timing over the performances of a direct injection spark ignition engine[A].SAE Paper[C].990174,1999
  • 6[6]Brehob D D,Stein R A,Haghgooie M.Stratified-charge engine fuel economy and emission characteristics[A].SAE Paper[C].982704,1998
  • 7[7]Stovell C,Matthews R D, Henry K N.Analysis of mixture formation of direct injection gasoline engine[A].SAE Paper[C].980157,1998
  • 8[8]Kano M,Saito K,Basaki M.Emissions and fuel economy of a 1998 Toyota with a direct injection spark ignition engine[A].SAE Paper[C].981462,1998
  • 9[9]Green R K, Zavier C C. Charge stratification in a spark ignition engine[A].Proc Instn Mech Engrs[C].1992,206(A1):59-64
  • 10[10]Rousseau S,Lemoult B, Tazerout M.Combustion characteristics of natural gas in a lean burn spark-ignition engine[A].Proc Instn Mech Engrs[C].1999,213(D5):481-489

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