A laminar burning velocity and flame thickness correlation for ethanol–air mixtures valid at spark-ignition engine conditions
暂无分享,去创建一个
Joachim Demuynck | Sebastian Verhelst | Jeroen Vancoillie | Jonas Galle | J. Demuynck | S. Verhelst | Jeroen Vancoillie | Jonas Galle | J. A. Oijen | J. A. van Oijen | J. Vancoillie
[1] Joachim Demuynck,et al. A correlation for the laminar burning velocity for use in hydrogen spark ignition engine simulation , 2011 .
[2] Ömer L. Gülder,et al. Burning velocities of ethanol-isooctane blends , 1984 .
[3] Matthew J. Brusstar,et al. High Efficiency and Low Emissions from a Port-Injected Engine with Neat Alcohol Fuels , 2002 .
[4] Joachim Demuynck,et al. Laminar burning velocity correlations for methanol-air and ethanol-air mixtures valid at SI engine conditions , 2011 .
[5] B. Renou,et al. Measurement of laminar burning velocity and Markstein length relative to fresh gases using a new postprocessing procedure: Application to laminar spherical flames for methane, ethanol and isooctane/air mixtures , 2012 .
[6] Olivier Colin,et al. Modelling of combustion and nitrogen oxide formation in hydrogen-fuelled internal combustion engines within a 3D CFD code , 2008 .
[7] Norbert Peters,et al. Experimental and Numerical Investigation of Iso-Octane, Methanol and Ethanol Regarding Laminar Burning Velocity at Elevated Pressure and Temperature , 2009 .
[8] D. Bradley,et al. Explosion bomb measurements of ethanol-air laminar gaseous flame characteristics at pressures up to 1.4 MPa , 2009 .
[9] F. Egolfopoulos,et al. A study on ethanol oxidation kinetics in laminar premixed flames, flow reactors, and shock tubes , 1992 .
[10] N. Marinov,et al. A detailed chemical kinetic model for high temperature ethanol oxidation , 1999 .
[11] Zheng Chen,et al. On the extraction of laminar flame speed and Markstein length from outwardly propagating spherical flames , 2011 .
[12] Sebastian Verhelst,et al. MODELING THE COMBUSTION OF LIGHT ALCOHOLS IN SI ENGINES: A PRELIMINARY STUDY , 2010 .
[13] Richard Pearson,et al. Extending the Supply of Alcohol Fuels for Energy Security and Carbon Reduction , 2009 .
[14] A. Konnov,et al. Laminar burning velocities of n-heptane, iso-octane, ethanol and their binary and tertiary mixtures , 2011 .
[15] Frederick L. Dryer,et al. Chemical Kinetics of Ethanol Oxidation , 2005 .
[16] Richard J. Blint,et al. The Relationship of the Laminar Flame Width to Flame Speed , 1986 .
[17] Jorge J. Moré,et al. The Levenberg-Marquardt algo-rithm: Implementation and theory , 1977 .
[18] H. Metghalchi,et al. Laminar burning speeds of ethanol/air/diluent mixtures , 2011 .
[19] F. Halter,et al. Experimental determination of laminar burning velocity for butanol and ethanol iso-octane blends , 2011 .
[20] Nedunchezhian Swaminathan,et al. Validation of a Turbulent Flame Speed Model across Combustion Regimes , 2010 .
[21] F. Williams,et al. Numerical and experimental studies of ethanol flames , 2007 .
[22] R. Cracknell,et al. Laminar burning velocity measurements of liquid fuels at elevated pressures and temperatures with combustion residuals , 2011 .
[23] Denis Veynante,et al. On the combination of complex chemistry with a 0-D coherent flame model to account for the fuel properties in spark ignition engines simulations: Application to methane-air-diluents mixtures , 2011 .
[24] A. Konnov. Implementation of the NCN pathway of prompt-NO formation in the detailed reaction mechanism , 2009 .
[25] Ke Zeng,et al. Determination of the laminar burning velocities for mixtures of ethanol and air at elevated temperatures , 2007 .
[26] Charles K. Westbrook,et al. A comparative experimental and computational study of methanol, ethanol, and n-butanol flames , 2010 .
[27] A. Konnov,et al. The temperature dependence of the laminar burning velocity of ethanol flames , 2011 .
[28] F. Le Berr,et al. On the Reduction of a 3D CFD Combustion Model to Build a Physical 0D Model for Simulating Heat Release, Knock and Pollutants in SI Engines , 2009 .
[29] C. Meneveau,et al. A power-law flame wrinkling model for LES of premixed turbulent combustion Part I: non-dynamic formulation and initial tests , 2002 .