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1
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85072449680
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Allard, L.1
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2
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84946098362
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Modeling the Fuel Spray and Combustion Process of the Ignition Quality Tester™ with KIVA-3V
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Irvine, CA
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Bogin, G. E. Jr, DeFilippo, A., Chen, J. Y., Chin, G., Luecke, J., Ratcliff, M. A., Zigler, B. T., and Dean, A. M., "Modeling the Fuel Spray and Combustion Process of the Ignition Quality Tester™ with KIVA-3V," Fall Meeting of the Western States Section of the Combustion Institute, Irvine, CA, 2009.
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Bogin, Jr.G.E.1
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3
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0037400425
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Cetane numbers of branched and straight-chain fatty esters determined in an ignition quality tester
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85072365778
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Efficient Simulation of Diesel Engine Combustion Using Realistic Chemical Kinetics in CFD
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Liang, L., Naik, C., Puduppakkam, K., Wang, C., et al., "Efficient Simulation of Diesel Engine Combustion Using Realistic Chemical Kinetics in CFD," SAE Technical Paper 2010-01-0178, 2010, doi: 10.4271/2010-01-0178.
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6
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78649753455
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Applying Detailed Kinetics to Realistic Engine Simulation: The Surrogate Blend Optimizer and Mechanism Reduction Strategies
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Naik, C., Puduppakkam, K., Wang, C., Kottalam, J., "Applying Detailed Kinetics to Realistic Engine Simulation: the Surrogate Blend Optimizer and Mechanism Reduction Strategies," SAE Int. J. Engines 3 (1): 241-259, 2010, doi: 10.4271/2010-01-0541.
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Use of Detailed Chemical Kinetics to Study HCCI Engine Combustion with Consideration of Turbulent Mixing Effects
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An Improved Spray Model for Reducing Numerical Parameter Dependencies in Diesel Engine CFD Simulations
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Abani, N., Kokjohn, S., Park, S., Bergin, M., et al., "An Improved Spray Model for Reducing Numerical Parameter Dependencies in Diesel Engine CFD Simulations," SAE Technical Papers, 2008-01-0970, 2008, doi: 10.4271/2008-01-0970.
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78649721555
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Validation of Mesh- and Timestep- Independent Spray Models for Multi-Dimensional Engine CFD Simulation
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Wang, Y., Ge, H., and Reitz, R., "Validation of Mesh- and Timestep- Independent Spray Models for Multi-Dimensional Engine CFD Simulation," SAE Int. J. Fuels Lubr. 3 (1): 277-302, 2010, doi: 10.4271/2010-01-0626.
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A Detailed Chemical Kinetic Reaction Mechanism for Combustion of n-Alkanes from n-Octane to n-Hexadecane
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Westbrook, C. K., Pitz, W., Herbinet, O., Curran, H. J., and Silke, E. J., "A Detailed Chemical Kinetic Reaction Mechanism for Combustion of n-Alkanes from n-Octane to n-Hexadecane," Comb. Flame, 156: 181-191, 2009.
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Validation Studies of a Master Kinetic Mechanism for Diesel and Gasoline Surrogate Fuels
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Puduppakkam, K., Naik, C., Wang, C., and Meeks, E., "Validation Studies of a Master Kinetic Mechanism for Diesel and Gasoline Surrogate Fuels," SAE Technical Paper 2010-01-0545, 2010, doi: 10.4271/2010-01-0545.
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Combustion and Emissions Modeling of an HCCI Engine Using Model Fuels
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Puduppakkam, K., Liang, L., Naik, C., Meeks, E., and Bunting, B., "Combustion and Emissions Modeling of an HCCI Engine Using Model Fuels," SAE Technical Papers, 2009-01-0669, 2009, doi: 10.4271/2009-01- 0669.
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On the applicability of directed relation graphs to the reduction of reaction mechanisms
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61849131042
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A Dynamic Adaptive Chemistry Scheme for Reactive Flow Computations
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Modeling the Detailed Chemical Kinetics of NOx Sensitization for the Oxidation of a Model fuel for Gasoline
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Naik, C., Puduppakkam, K., and Meeks, E., "Modeling the Detailed Chemical Kinetics of NOx Sensitization for the Oxidation of a Model fuel for Gasoline," SAE Int. J. Fuels Lubr., 3 (1): 556-566, 2010, doi: 10.4271/2010-01-1084.
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Detailed Modeling of Low-Temperature Alkane Oxidation: High-Pressure Rate Rules for Alkyl+O2 Reactions
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Detailed Modeling of the Reaction of C2H5 + 02
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