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Combustion and Flame, ISSN 0010-2180, 2012, Volume 159, Issue 1, pp. 142 - 150
An experimental system was designed to stabilize steady counterflow methane diffusion flames at elevated pressures, up to 3 MPa. In contrast with the much more... 
Diffusion flame | Counterflow | High pressure | Laminar | ENGINEERING, CHEMICAL | THERMODYNAMICS | ENGINEERING, MULTIDISCIPLINARY | ENERGY & FUELS | SOOT FORMATION | SIZES | ELEVATED PRESSURES | PREDICTION | Combustion | Computer-generated environments | Computer simulation | Mechanical engineering | Analysis | Adiabatic flow | Diffusion flames | Soot | Buoyancy | Instability | Mathematical models
Journal Article
Combustion and Flame, ISSN 0010-2180, 10/2018, Volume 196, pp. 364 - 376
Journal Article
Combustion and Flame, ISSN 0010-2180, 09/2018, Volume 195, pp. 63 - 74
Journal Article
Combustion and Flame, ISSN 0010-2180, 09/2018, Volume 195, p. 63
We report on experimental evidence of the existence of a new self-sustaining low-temperature multistage warm diffusion flame, existing between the cool flame... 
Multistage | Oxygen | Turbulent flow | Diffusion flames | Fluid dynamics | Flame temperature | Laser induced fluorescence | Chemical reactions | Combustion | Chemiluminescence | Fuels | Radicals | Organic chemistry | Low temperature physics | Counterflow | Flame structure | Oxidation | Diffusion | Microgravity | Carbonyls | Low temperature
Journal Article
International Journal of Hydrogen Energy, ISSN 0360-3199, 12/2017, Volume 42, Issue 49, pp. 29532 - 29544
Journal Article
Combustion and Flame, ISSN 0010-2180, 12/2016, Volume 174, pp. 152 - 165
Journal Article
International Journal of Hydrogen Energy, ISSN 0360-3199, 04/2013, Volume 38, Issue 11, pp. 4848 - 4863
Journal Article
International Journal of Hydrogen Energy, ISSN 0360-3199, 01/2016, Volume 41, Issue 3, pp. 2011 - 2022
This study addresses numerically the influence of several operating conditions on the structure and NO emissions of a biogas diffusion flame. The analysis is... 
Counter-flow diffusion flame | Flame structure | CO2 chemical effects | Biogas–hydrogen blends | NO emissions | Radiation | Biogas-hydrogen blends | chemical effects | CO | ELECTROCHEMISTRY | COMBUSTION | PROFILES | ENERGY & FUELS | NO FORMATION | STABILITY | ENGINE | CHEMISTRY, PHYSICAL | LAMINAR | METHANE | FUELS | RANGE | Biogas | Hydrogen | Biomass energy | Analysis | Investigations | Enrichment | Chemical effects | Dissipation | Carbon dioxide | Chains | Scalars | Maxima
Journal Article
Combustion and Flame, ISSN 0010-2180, 04/2015, Volume 162, Issue 4, pp. 1566 - 1574
Journal Article
International Journal of Hydrogen Energy, ISSN 0360-3199, 07/2017, Volume 42, Issue 29, pp. 18633 - 18642
The effect of elevated pressures on the soot formation in coaxial ethylene-diffusion flame was investigated under different ventilation conditions, i.e. one... 
Elevated pressures | Ventilation-assisted flow | Diffusion flame | Soot | ELECTROCHEMISTRY | COFLOW | ENERGY & FUELS | FIELD | CHEMISTRY, PHYSICAL | LAMINAR | Valves | Mechanical engineering | Ethylene
Journal Article
Journal of Fluid Mechanics, ISSN 0022-1120, 11/2018, Volume 855, pp. 1156 - 1169
The flickering of buoyant diffusion flames is associated with the periodic shedding of toroidal vortices that are formed under gravity-induced shearing at the... 
flames | vortex flows | instability | COMBUSTION | FIREWHIRLS | NUMBER | CIRCULATION | PHYSICS, FLUIDS & PLASMAS | POOL FIRES | STABILITY | FLOW | MECHANICS | UNIVERSAL TIME-SCALE | RING FORMATION | PLUMES | Diffusion flames | Fluid dynamics | Theory | Periodicity | Buoyancy | Periodic variations | Froude number | Shearing | Vortex rings | Dynamics | Vortices | Dimensional analysis | Frequency | Flow velocity | Scaling | Diffusion | Inlets (waterways) | Gravity
Journal Article
AIAA Journal, ISSN 0001-1452, 08/2019, Volume 57, Issue 8, pp. 3206 - 3212
A modeling strategy to incorporate differential diffusion effects on both filter and subgrid scale in large-eddy simulation (LES)/filtered density function... 
PDF | ENGINEERING, AEROSPACE | MILD COMBUSTION | HOT | FILTERED DENSITY-FUNCTION | Temperature | Turbulent flow | Molecular diffusion | Computer simulation | Turbulent flames | Variations | Nonuniformity | Shear layers | Large eddy simulation | Differential equations | Diffusion effects | Modelling | Drift | Diffusion
Journal Article