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柴油/甲醇不同掺烧方式燃烧过程和排放对比分析 被引量:4

Comparative Analysis of Combustion and Emissions of DI Engine Operating on Diesel /Methanol by Different Methods
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摘要 在不改变4B26增压柴油机结构的前提下,对柴油机气道喷射甲醇与柴油/甲醇直接混合燃料进行了燃烧过程、排放性能试验,对两种柴油/甲醇掺烧方式的燃烧过程与排放进行了分析。试验结果表明:与柴油/甲醇直接混合相比,柴油机气道喷射掺烧10%甲醇,气缸压力相差不大,缸内平均温度较低,低负荷时滞燃期较长;气道喷射甲醇大幅度降低排气温度,NOx和碳烟排放降低效果较为显著,HC和CO排放较高。与燃烧柴油相比,两种方式掺烧10%甲醇时,发动机的动力性变化不大,缸内平均温度都有所降低,滞燃期有所延长;NOx和碳烟排放降低,HC和CO排放有所增加。 The combustion process and emissions of diesel with 10% of diesel/methanol blend or 10% of port-injected methanol are studied. 4B26 turbo-charge DI engine without any change in its original struc- ture is test at a constant speed of 2 200 r/min under the conditions of four different engine loads, which is equipped with an electrically-controlled port injection system. The result shows that the in-cylinder pres- sure of DI engine has no great difference in the use of diesel/methanol blend and port-injected methanol. Compared with diesel/methanol blend, the port-injected methanol gives a lower intake air temperature, contributing to a further lower exhaust temperature. The ignition delay period becomes longer at low load, and NO, and soot emissions are reduced significantly, meanwhile, HC and CO emissions are high. In both cases, compared with diesel, the maximum creases, and the ignition delay postpones at low pressure hardly changes, the in-cylinder temperature de- load; NO, and soot emissions are reduced, and HC andCO emissions are increased.
出处 《兵工学报》 EI CAS CSCD 北大核心 2014年第3期403-408,共6页 Acta Armamentarii
基金 国家自然科学基金项目(50776042) 江苏省高校自然科学基金重点项目(10KJA470009 08KJA470001) 江苏省2012年度普通高校研究生科研创新计划项目(CXZZ12_0676) 2011年江苏省高校优势学科建设工程项目(苏政发办[2011]6号)
关键词 动力机械工程 甲醇 燃烧过程 排放 power machinery engineering methanol combustion process emission
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  • 1姚春德,段峰,李云强,王银山.不同喷醇方式对柴油机实行柴油/醇组合燃烧时性能的影响[J].内燃机学报,2004,22(5):405-410. 被引量:16
  • 2姚春德,段峰,李云强,王银山,程传辉,宋金瓯,姚广涛.柴油/甲醇组合燃烧发动机的燃烧特性与排放[J].燃烧科学与技术,2005,11(3):214-217. 被引量:47
  • 3覃军,刘海峰,尧命发,陈辉.柴油机掺烧不同比例生物柴油的试验研究[J].燃烧科学与技术,2007,13(4):335-340. 被引量:54
  • 4Yao Chunde, Cheung C S, Cheng Chuanhui, et al.Effect of diesel/methanol compound combustion on diesel engine combustion and emissions [ J]. Energy Conversion andManagement, 2008, 49(6): 1696-1704.
  • 5Huang Zuohua, Lu Hongbing, Jiang Deming, et al. Combustion behaviors of a compression-ignition engine fuelled with diesel/methanol blends under various fuel delivery advance angles[J]. Bioresource Technology, 2004, 95(3):331-341.
  • 6Curran H J, Gaffuri P, Pitz W J. A comprehensive modeling study of n-heptane oxidation[J-. Combustion andFlame, 1998, 114(1):149-177.
  • 7Held T J, Dryer F L. A comprehensive mechanism for methanol oxidation [J]. International Journal of Chemical Kinetics, 1998, 30(11): 805-830.
  • 8Wamatz J, Combustion chemistry[M]. New York: Springer-Verlag, 1984.
  • 9Li Houliang, Miller D L, Cemansky N R Development of a reduced chemical kinetic model for prediction of preignition reactivity and autoignition of primary reference fuels[C]. SAE Paper 960498, 1996.
  • 10Fleisch T, McCarthy C, Basu A. A New Clean Diesel Technology: Demonstration of ULEV Emissions on a Navistar Diesel Engine Fueled with Dimethyl Ether[J]. SAE Transactions, 1995, 104(4): 42-53.

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  • 1刘亚哲,吴健,徐斌,马志豪,王站成,池奕承.甲醇—柴油混合燃料在共轨发动机上的燃烧和排放特性研究[J].车用发动机,2012(3):37-41. 被引量:6
  • 2Kanda T, Hakozaki T, Uchimoto T, et al. PCCI opera- tion with fuel injection timing set close to TDC[J]. SAE Paper 2006-01-0920.
  • 3Raouf M,Peng Z J, Seyed M M. Analysis the effect of advanced injection strategies on engine performance and pollutant emissions in a heavy duty DI-diesel en- gine by CFD modeling[J]. International Journal of Heat and Fluid Flow,2012,33(1):59-69.
  • 4Yao Z, Wei H, Perugu H, et al. Sensitivity analysis of project level MOVES running emission rates for light and heavy duty vehicles[J]. Journal of Traffic and Transportation Engineering.. English Edition, 2014, 1 (2) ~81-96.
  • 5Yoshihiro H, Minaji 1, Kiyomi N. Achieving lower ex- haust emissions and better performance in an HSDI diesel engine with multiple injection[J]. SAE Paper 2005-01-0928.
  • 6Alessia A, Alessandro M, Giovanni D N. Emissions from ethers and organic carbonate fuel additives: A Review [J]. Water Air Soil Pollution, 2011,221 ( 1/ 4) : 405-423.
  • 7Pusehmann H, Diezemann M, Mueller S. Influence of innovative diesel-ethanol blend on combustion, emis- sion and fuel-carrying components f-J-~. SAE Paper 2013-01-2696.
  • 8Leermakers C A J,Berge B V D,Luijten C C M,et al. Gasoline-diesel dual fuel: effect of injection timing and fuel balanceEJ]. SAE Paper 2011-01-2437.
  • 9Puschmann H, Brauer M, Brinkmann P, et al. Emis- sion and ignition effects of alternative fuels at conven- tional and premixed diesel eombustionEJ]. SAE Paper2010-01-0870.
  • 10Hillion M, Buhlbuck H, Chauvin J, et al. Combustion control of diesel engines using injection timing[J]. SAE Paper 2009-09-0507.

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