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85072445389
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Numerical investigation of soot formation and oxidation under diesel engine conditions
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Pitsch H. Wan Y. P. Peters N. Numerical investigation of soot formation and oxidation under diesel engine conditions SAE Paper 952357, 1995.
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Pitsch, H.1
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2
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85072474871
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Three-dimensional modelling of NOx and soot formation in DI-diesel engines using detailed chemistry based on the interactive flamelet approach
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Pitsch H. Barths H. Peters N. Three-dimensional modelling of NOx, and soot formation in DI-diesel engines using detailed chemistry based on the interactive flamelet approach SAE Paper 962057, 1996.
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Pitsch, H.1
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On mathematical modeling of turbulent combustion with special emphasis on soot formation and combustion
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Magnussen, B.F.1
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Simplified three-dimensional modeling of mixture formation and combustion in a D.I. diesel engine
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Nishida K. Hiroyasu H. Simplified three-dimensional modeling of mixture formation and combustion in a D.I. diesel engine SAE Paper 890269, 1989.
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Nishida, K.1
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Three-dimensional calculations of DI diesel engine combustion and comparison with in-cylinder sampling valve data
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Belardini P. Bertoli C. Ciajolo A. D'anna A. Del Giacomo N. Three-dimensional calculations of DI diesel engine combustion and comparison with in-cylinder sampling valve data SAE Paper 922225, 1992.
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Belardini, P.1
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7
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85072477434
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Three-dimensional simulation of pollutant formation in a DI-diesel engine using multiple interactive flamelets
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Barths H. Antoni C. Peters N. Three-dimensional simulation of pollutant formation in a DI-diesel engine using multiple interactive flamelets SAE Paper 982459, 1998.
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Barths, H.1
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8
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0032673947
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3-D simulation of DI-diesel combustion and pollutant formation using a two-component reference fuel
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Barths H. Pitsch H. Peters N. 3-D simulation of DI-diesel combustion and pollutant formation using a two-component reference fuel Oil and Gas and Technology-Rev. IFP 1999, 54 (2), 233-244.
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85072432878
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Modeling the effect of split injections in diesel engines using representative interactive flamelets
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Hasse C. Barths H. Peters N. Modeling the effect of split injections in diesel engines using representative interactive flamelets SAE Paper 1999-01-3547, 1999.
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Hasse, C.1
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Modeling the combustion in a small-bore diesel engine using a method based on representative interactive flamelets
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Hergart C. A. Barths H. Peters N. Modeling the combustion in a small-bore diesel engine using a method based on representative interactive flamelets SAE Paper 1999-01-3550, 1999.
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Hergart, C.A.1
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Numerical investigation of the combustion process in a direct-injection stratified charge engine
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Gill A. Gutheil E. Warnatz J. Numerical investigation of the combustion process in a direct-injection stratified charge engine Combust. Sci. Technol. 1996, 115 (4-6), 317.
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Laminar diffusion flamelet models in non-premixed turbulent combustion
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Peters N. Laminar diffusion flamelet models in non-premixed turbulent combustion Prog. Energy Combust. Sci. 1984, 10, 319-339.
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Laminar flamelet concepts in turbulent combustion
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Peters N. Laminar flamelet concepts in turbulent combustion. In Twenty-First Symposium (International) on Combustion, 1987, pp. 1231-1250 (The Combustion Institute, Pittsburgh, Pennsylvania).
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A Lagrangian simulation of flamelet extinction and re-ignition in turbulent jet diffusion flames
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In, (The Combustion Institute, Pittsburgh, Pennsylvania).
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Mauss F. Keller D. Peters N. A Lagrangian simulation of flamelet extinction and re-ignition in turbulent jet diffusion flames. In Twenty-Third Symposium (International) on Combustion, 1990, pp. 693-698 (The Combustion Institute, Pittsburgh, Pennsylvania).
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Calculation methods for turbulent reacting flows: A review
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Jones W. P. Whitelaw J. H. Calculation methods for turbulent reacting flows: A review Combust. Flame 1982, 48, 1-26.
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Unsteady flamelet modelling of turbulent hydrogen/air diffusion flames
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Pitsch H. Chen M. Peters N. Unsteady flamelet modelling of turbulent hydrogen/air diffusion flames. In Twenty-Seventh Symposium (International) on Combustion, 1998 (The Combustion Institute, Pittsburgh, Pennsylvania).
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Evaluated kinetic data for cumbustion modelling
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Baulch D. L. Cobos C. J. Cox R. A. Frank P. Hayman G. Just T. Kerr J. A. Murrells T. Pilling M. J. Troe J. Walker R. W. Warnatz J. Evaluated kinetic data for cumbustion modelling J. Phys. Chem. Ref. Data 1992, 21, 411-429.
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The kinetics of thermochemistry of chemical oxidation with application to combustion and flames
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Benson S. W. The kinetics of thermochemistry of chemical oxidation with application to combustion and flames Prog. Energy Combust. Sci., 1981, 7, 125-134.
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A detailed low-temperature reaction mechanism of n-heptane auto-ignition
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Reduced mechanisms for NOx emissions from hydrocarbon diffusion flames
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Detailed modeling of PAH profiles in a sooting low-pressure acetylene flame
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Investigation of the ignition process of sprays under diesel engine conditions using reduced n-heptane chemistry
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Numerical simulation of transient diesel sprays with the CAS model
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Krause A. Peters N. Numerical simulation of transient diesel sprays with the CAS model. In ILASS-Europe 99, 1999.
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Direct injection diesel engine soot modeling: Formulation and results
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