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Combustion and Flame, ISSN 0010-2180, 02/2018, Volume 188, pp. 453 - 468
The propagation of a lean laminar premixed syngas–air flame is investigated numerically in a confined rectangular domain with isothermal walls at a temperature that is lower than that of the unburned mixture... 
Spectral element method | Flame–wall interaction | Direct numerical simulation | Syngas laminar premixed flame | Head-on and side-wall quenching | Flame wall interaction | OXIDATION | COMBUSTION | WALL INTERACTION | STRETCH | ENERGY & FUELS | ELEVATED PRESSURES | ENGINEERING, MECHANICAL | ENGINEERING, CHEMICAL | DIRECT NUMERICAL-SIMULATION | HYDROGEN | THERMODYNAMICS | ENGINEERING, MULTIDISCIPLINARY | CHANNEL | TEMPERATURE | DIFFUSION | Thermodynamics | Combustion | Numerical analysis
Journal Article
Proceedings of the Combustion Institute, ISSN 1540-7489, 2017, Volume 36, Issue 2, pp. 2005 - 2016
Turbulent lean premixed dodecane/air flames are simulated in a doubly-periodic domain using detailed kinetics and transport over a range of Karlovitz number... 
Low Mach number flow | Detailed chemistry | Direct numerical simulation | Dodecane | Turbulent premixed flames | NUMBERS | ENERGY & FUELS | ENGINEERING, MECHANICAL | ENGINEERING, CHEMICAL | DIRECT NUMERICAL-SIMULATION | H-2/AIR FLAMES | THERMODYNAMICS | CH4/AIR | Pyrolysis | Mechanical engineering | Turbulence | Numerical analysis
Journal Article
Journal Article
Combustion and Flame, ISSN 0010-2180, 01/2016, Volume 163, pp. 220 - 240
Interactions of turbulence, molecular transport, and energy transport, coupled with chemistry play a crucial role in the evolution of flame surface geometry, propagation, annihilation, and local... 
Flame particle tracking | Displacement flame speed | Direct numerical simulation | Turbulent premixed flames | Turbulence | Hydrogen | Analysis | Aerospace engineering | Combustion | Numerical analysis
Journal Article
2011, ISBN 9780521769617, xvi, 421
.... An improved understanding of lean fuel turbulent premixed flames must play a central role in the fundamental science of these new concepts... 
Combustion engineering | Mechanical engineering & materials | Turbulence | Flame
Book
Proceedings of the Combustion Institute, ISSN 1540-7489, 2015, Volume 35, Issue 2, pp. 1331 - 1339
Journal Article
Experiments in Fluids, ISSN 0723-4864, 10/2011, Volume 51, Issue 4, pp. 1153 - 1167
Journal Article
Fuel, ISSN 0016-2361, 02/2017, Volume 189, pp. 8 - 14
•Flame–wall interactions of hydrocarbon flames are studied using 1D DNS.•Flame–wall interaction time can be scaled by flame time at fixed wall temperature... 
Flame–wall interactions | Direct numerical simulation | Pressure rising process | Laminar premixed flames | Wall heat flux | ENGINEERING, CHEMICAL | BOUNDARY-CONDITIONS | ENERGY & FUELS | FLOWS | Flame-wall interactions | Methane | Numerical analysis
Journal Article
Fuel (Guildford), ISSN 0016-2361, 2018, Volume 223, pp. 334 - 343
•Biogas non-premixed flames in cross-flow burner are experimentally studied.•Inherent carbon-dioxide in biogas calls for study on flame stability regimes... 
Biogas | Cross-flow non-premixed flames | Backward-facing-step | Rectangular bluff-body | Flame regimes | Stability maps | ENGINEERING, CHEMICAL | DIFFUSION FLAME | ENERGY & FUELS | FUEL | LAMINAR | Methane | Biomass energy | Analysis
Journal Article
Proceedings of the Combustion Institute, ISSN 1540-7489, 2009, Volume 32, Issue 1, pp. 57 - 82
This lecture describes recent theoretical developments associated with the dynamics of flames, obtained primarily by exploiting the various temporal and length scales involved in the combustion process... 
Edge flame | Flame dynamics | Hydrodynamic theory | Diffusion flames | Flame instability | PREMIXED EDGE-FLAMES | NONUNIFORM MIXTURE | ENERGY & FUELS | PLANAR PROPAGATING FLAMES | LAMINAR BURNING VELOCITIES | NON-LINEAR ANALYSIS | MARKSTEIN NUMBERS | ENGINEERING, MECHANICAL | ENGINEERING, CHEMICAL | THERMODYNAMICS | CELLULAR INSTABILITIES | DIFFUSIONAL-THERMAL INSTABILITY | NUMERICAL-SIMULATION | HYDRODYNAMIC INSTABILITY
Journal Article
Progress in energy and combustion science, ISSN 0360-1285, 2002, Volume 28, Issue 5, pp. 435 - 475
Journal Article
Combustion and Flame, ISSN 0010-2180, 10/2016, Volume 172, pp. 62 - 78
In this paper we investigate the interaction between the flame structure, the flow field and the coupled heat transfer with the flame holder of a laminar lean premixed CH4/air flame stabilized... 
Flame–flow interaction | Conjugate heat transfer | Laminar premixed flames | Bluff body flames | Flame leading edge | COMBUSTION | ENERGY & FUELS | STABILIZED FLAMES | SIMULATION | ENGINEERING, MECHANICAL | BLOWOFF | ENGINEERING, CHEMICAL | PREFERENTIAL TRANSPORT | THERMODYNAMICS | ENGINEERING, MULTIDISCIPLINARY | CONSTRUCTION | DYNAMICS | CHEMISTRY | Flame-flow interaction | GRADIENTS | PROPAGATION
Journal Article
Proceedings of the Combustion Institute, ISSN 1540-7489, 2017, Volume 36, Issue 2, pp. 1827 - 1834
Journal Article
Combustion and Flame, ISSN 0010-2180, 07/2017, Volume 181, pp. 110 - 122
...*, CH*, and CO2* is conducted for laminar premixed conical CH4/air flames diluted with CO2 or N2... 
Chemiluminescence | Biogas | Laminar flames | Premixed flames | Engineering Sciences | Reactive fluid environment
Journal Article