[2] 王志,帅石金,王建昕,等.采用并行计算和简化机理的HCCI发动机多维模拟[J].内燃机学报,2008,26(2):116-120. [3] Hessel R P,Foster D E,Aceves S M,et al.Modelling iso-octane HCCI using CFD with multi-zone detailed chemistry;comparison to detailed speciation data over a range of lean equivalence ratios [C].Detroit:2008 SAE World Congress,2008:1-47. [4] Gou X L,Sun W T,Chen Z,et al.A dynamic multi-time scale method for combustion modeling with detailed and reduced chemical kinetic mechanisms[J].Combustion and Flame,2010,157(6):1111-1121. [5] Pope S B.Computationally efficient implementation of combustion chemistry using in situ adaptive tabulation[J].Combustion Theory and Modelling,1997,1(1):41-63. [6] Lu L Y,Lantz S R,Ren Z Y,et al.Computationally efficient implementation of combustion chemistry in parallel PDF calculations [J].Journal of Computational Physics,2009,228(15):5490-5525. [7] 钱炜祺,杨顺华,肖保国,等.用准稳态方法建立碳氢燃料点火燃烧的简化化学反应动力学模型[J].空气动力学学报,2007, 25(1):12-18. [8] Lam S H,Goussis D A.The csp method for simplifying kinetics[J].International Journal of Chemical Kinetics,1994,26(4):461-486. [9] 乔瑜,徐明厚,Green W H.基于敏感性分析的H2/O2反应机理最优简化[J].中国电机工程学报,2006,26(4):16-20. [10] 林志勇,周进,黄玉辉.基于敏感性分析和准稳态假设简化详细反应机理[J].国防科技大学学报,2007,29(1):16-20. [11] 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. [12] Turányi T.Applications of sensitivity analysis to combustion chemistry [J].Reliability Engineering and System Safety,1997,57(1):41-48. [13] Turányi T.Sensitivity analysis of complex kinetic system tools and applications [J].Journal of Mathematical Chemistry,1990, 5(3):203-248. [14] Vajda S,Valko P,Turányi T.Principal component analysis of kinetic models [J].International Journal of Chemical Kinetics,1985,17(1):55-81. [15] Lu T F,Law C K.A directed relation graph method for mechanism reduction[J].Proceedings of the Combustion Institute,2005,30(1):1333-1341. [16] Xin Y X,Song Z J,Tan Y Z,et al.The directed relation graph method for mechanism reduction in the oxidative coupling of methane [J].Catalysis Today, 2008,131(1-4):483-488. [17] Elliotta L,Inghama D B,Kyneb A G,et al.Genetic algorithms for optimization of chemical kinetics reaction mechanisms [J].Progress in Energy and Combustion Science,2004,30(3):297-328. [18] 牛宝柱,蒋勇,邱榕.应用遗传算法优化氢气/空气燃烧反应系数[J].火灾科学,2009,18(2):45-50. [19] Nagy T,Turányi T.Reduction of very large reaction mechanisms using methods based on simulation error minimization [J].Combustion and Flame,2009,156(2):417-428. [20] Schwer D A,Lu P,Green W H.An adaptive chemistry approach to modeling complex kinetics in reacting flows [J].Combustion and Flame,2003,133(4):451-465. [21] Smith G P, Golden D M, Frenklach M, et al.GRI-Mech 3.0 [EB/OL] .http://www.me.berkeley.edu/gri_mech/, 2009. [22] Liang L,Stevens J G,Raman S,et al.The use of dynamic adaptive chemistry in combustion simulation of gasoline surrogate fuels [J].Combustion and Flame,2009,156(7):1493-1502.
|