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本文研究了进气中CO2浓度对燃烧和排放特性的影响.研究表明在所有的预混合燃料比下,当CO2浓度增加时,NOx排放随之大幅减少,烟度排放有小的变化.利用KIVA3V和湍流与化学反应交互的燃烧模型对柴油机预混合燃烧进行了模拟研究,对缸内OH浓度的模拟计算表明,随着CO2浓度的增加,着火前期OH生成浓度明显向后推移,这表明燃料的氧化速率随CO2浓度的增加变慢,从而延长了着火滞燃期.进气中CO2浓度变大时,燃烧温度降低,有利于降低NOx的排放.

参考文献

[1] Rudolf H Stanglmaier;Charles E Roberts .Homogeneous Charge Compression Ignition (HCCI): Benefits, Compromises, and Future Engine Applications[R].SAE Paper,1999.
[2] Najt P M;Foster D E .Compression Ignited Homogeneous Charge Combustion[R].SAE Paper 830264
[3] R H Thring .Homogeneous Charge Compression-Ignition (HCCI) Engines[R].SAE 892068
[4] T W Ryan;T J Callahan .Homogeneous Charge Compression Ignition of Diesel Fuel[R].SAE 961160
[5] Y TAKEDA;N Keiichi;N Keiichi .Emission Characteristics of Premixed Lean Diesel Combustion with Extremely Early Staged Fuel Injection[R].SAE 961163
[6] Shuji Kimura;Osamu Aoki;Hiroshi Ogawa .New Combustion Concept for Ultra-Clean and High-Efficiency Small DI Diesel Engines[R].SAE Paper 1999-01-3681
[7] M Christensen;B Johansson;P Amnéus .Supercharged Homogeneous Charge Compression Ignition[R].SAE 980787
[8] Song Charng Kong;Craig D Marriott;Rolf D Reitz .Modeling and Experiments of HCCI Engine Combustion Using Detailed Chemical Kinetics with Multidimensional CFD[R].SAE Paper 2001-01-1026
[9] Song Charng Kong;Rolf D Reitz;Magnus Christensen .Modeling the Effects of Geometry Generated Turbulence on HCCI Engine Combustion[R].SAE Paper 2003-01-1088
[10] Salvador M Aceves;Daniel L Flowers;Charles K Westbrook .A Multi-zone Model for Prediction of HCCI Combustion and Emissions[R].SAE Paper 2000-01-0327
[11] Salvador M Aceves;Daniel L Flowers;Joel MartinezFrias .A Sequential Fluid Mechanic Chemical Kinetic Model of Propane HCCI Combustion[R].SAE Paper 2001-01-1027
[12] Shigeyuki Tanaka;Ferran Ayala;James C. Keck .A reduced chemical kinetic model for HCCI combustion of primary reference fuels in a rapid compression machine[J].Combustion and Flame,2003(4):467-481.
[13] Dagaut Philippe;Reuillon Marcelline;Cathonnet Michel .Experimental Study of the Oxidation of n-Heptane in a Jet Stirred Reactor from Low to High Temperature and Pressures up to 40 Atm[J].Combustion and Flame,1995,101:132-140.
[14] MINETTI R;Carlier M;Ribaucour M .A Rapid Compression Machine Investigation of Oxidation and AutoIgnition of n-Heptane: Measurements and Modeling[J].Combustion and Flame,1995,102:298-309.
[15] CATHERINE A.DALY;JOHN M.SIMMIE;PHILIPPE DAGAUT .Oxidation of Dimethoxymethane in a Jet-Stirred Reactor[J].Combustion and Flame,2001(3):1106-1117.
[16] Curran H J;E M Fisher;P A Glaude .Detailed Chemical Kinetic Modeling of Diesel Combustion with Oxygenated Fuels[R].SAE Paper 2001-01-0653
[17] A Fusco;A L Knox Kelecy.Application of a Phenomenological Soot Model to Diesel Engine combustion[A].,1994
[18] Gregory J Hampson;Jun Xin;Yong Liu .Modeling of NOx Emissions with Comparison to Exhaust Measurements for a Gas Fuel Converted Heavy-duty Diesel Engine[R].SAE Paper 961967
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