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Proceedings of the Combustion Institute, ISSN 1540-7489, 2017, Volume 36, Issue 1, pp. 195 - 202
Journal Article
Chemical engineering journal (Lausanne, Switzerland : 1996), ISSN 1385-8947, 2019, Volume 373, pp. 973 - 984
Journal Article
Fuel, ISSN 0016-2361, 07/2018, Volume 223, pp. 74 - 85
Reactions contributing to the generation of the explosive time scale that characterise autoignition of homogeneous stoichiometric CH4/air mixture are identified using two different chemical kinetics models... 
Detailed chemical kinetics | Methane/air autoignition | CSP | Model reduction | Explosive time scale | COMBUSTION | N-HEPTANE | ENERGY & FUELS | HIGH-PRESSURES | METHANE OXIDATION | MIXTURES | ENGINEERING, CHEMICAL | EXPLOSIVE MODES | TEMPERATURES | IGNITION DELAY | AUTO-IGNITION | HYDROCARBON
Journal Article
Renewable Energy, ISSN 0960-1481, 09/2015, Volume 81, pp. 43 - 51
...) with detailed chemical kinetics. A methanol reaction mechanism including 84-reactions, 21-species is used to simulate the methanol combustion... 
Detailed chemical kinetics | Original emissions | Spark ignition engine | Large eddy simulation | Methanol | ENERGY & FUELS | COMBUSTION CHARACTERISTICS | PERFORMANCE | RATIO | AIR | SIMULATION | DIESEL-ENGINE | KNOCK | INJECTION | FUEL | LES | Chemical reaction, Rate of | Emissions (Pollution) | Analysis | Formaldehyde | Numerical analysis | Combustion | Carbon monoxide | Automotive emissions
Journal Article
Energy conversion and management, ISSN 0196-8904, 2015, Volume 96, pp. 188 - 196
... (large eddy simulation) with methanol chemical kinetics (84-reaction, 21-species) in a high compression ratio methanol engine... 
Knock | HCCI | Detailed chemical kinetics | LES | Methanol engine | SYSTEM | COMBUSTION | SPARK-IGNITION ENGINE | ENERGY & FUELS | MODEL | AUTOIGNITION | GASOLINE | FLAME | PREDICTION | DENSITY | MECHANICS | THERMODYNAMICS | INJECTION | Chemical reaction, Rate of | Analysis | Methanol | Compression ratio | Large eddy simulation | Methyl alcohol | Reaction kinetics | Charge | Combustion | Engines
Journal Article
Energy Conversion and Management, ISSN 0196-8904, 11/2013, Volume 75, pp. 523 - 531
•Knock in a high compression ratio spark ignition methanol engine was simulated.•We used LES coupled with detailed chemical kinetics to simulate knock... 
Knock | Detailed chemical kinetics | Spark ignition engine | LES | Methanol | COMBUSTION | MECHANISM | SPARK-IGNITION ENGINE | ENERGY & FUELS | MECHANICS | THERMODYNAMICS | LARGE-EDDY SIMULATION | GAS
Journal Article
International Journal of Hydrogen Energy, ISSN 0360-3199, 07/2016, Volume 41, Issue 26, pp. 11427 - 11440
Five different chemical mechanisms for hydrogen combustion are employed in large eddy simulation of a nonpremixed hydrogen jet flame to investigate the ability of these mechanisms to represent... 
Nonpremixed flames | Hydrogen combustion | Detailed chemistry | Large eddy simulation | Linear eddy model | ELECTROCHEMISTRY | ENERGY & FUELS | COMBUSTION CHARACTERISTICS | CHEMISTRY, PHYSICAL | HOT | FLOW | H-2/N-2 | MODELS | COEFFICIENT | CHEMISTRY | NUMERICAL-SIMULATION | TURBULENT TRANSPORT | Turbulence | Combustion | Wildlife conservation | Chemical reaction, Rate of | Hydrogen | Analysis | Computational fluid dynamics | Reaction kinetics | Jet flames
Journal Article
International journal of heat and mass transfer, ISSN 0017-9310, 2016, Volume 96, pp. 171 - 188
Journal Article