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INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, ISSN 0360-3199, 12/2012, Volume 37, Issue 24, pp. 19158 - 19167
Laminar burning velocities of CO-H-2-CO2-O-2 flames were measured by using the outwardly spherical propagating flame method. The effect of large fraction of... 
ELECTROCHEMISTRY | Flame radiation | ENERGY & FUELS | Laminar burning velocity | ELEVATED PRESSURES | CHEMISTRY, PHYSICAL | SYNGAS COMBUSTION | SPHERICALLY EXPANDING FLAMES | MARKSTEIN LENGTHS | Oxyfuel combustion | RADIATION | Syngas | PREMIXED FLAMES | TEMPERATURES | H-2/CO MIXTURES | HYDROGEN-AIR MIXTURES | IGNITION | Flame instability
Journal Article
Proceedings of the Combustion Institute, ISSN 1540-7489, 2015, Volume 35, Issue 1, pp. 711 - 719
Laminar burning velocities of hydrogen/air mixtures can show discrepancies up to 30%, making chemical mechanism validation and improvement difficult. The... 
Spherically expanding flames | Stretch effects | Flame speed | Laminar burning velocity | Consumption speed | Uncertainty | Cellular | Mathematical models | Combustion | Recording | Sampling | Burning rate | Laminar
Journal Article
Fuel, ISSN 0016-2361, 04/2018, Volume 217, pp. 160 - 165
From a usability and capability perspective, dimethyl ether (DME) fuel with nitrous oxide (N O) as oxidant is a promising combination for next-generation... 
Nitrous oxide | Dimethyl ether | Closed spherical bomb technique | Laminar burning velocity | FLAMES | ENGINEERING, CHEMICAL | HYDROGEN | PRESSURES | ENERGY & FUELS | AIR | IGNITION | DME | Thermal properties | Numerical analysis | Analysis | Methyl ether | Combustion | Anesthetics | Decomposition (Chemistry)
Journal Article
Combustion and Flame, ISSN 0010-2180, 11/2019, Volume 209, pp. 389 - 393
Journal Article
Combustion and Flame, ISSN 0010-2180, 06/2015, Volume 162, Issue 6, pp. 2311 - 2321
The development and validation of a new gasoline surrogate using laminar flame speed as a target parameter is presented. Laminar burning velocities were... 
Spherical flame instability | RON | TRF | Gasoline surrogates | Laminar burning velocity | AIR MIXTURES | N-HEPTANE | NUMBERS | ENERGY & FUELS | PRIMARY REFERENCE FUELS | CELLULARITY | MARKSTEIN LENGTHS | COMPRESSION | FLAME SPEEDS | ENGINEERING, MECHANICAL | ENGINEERING, CHEMICAL | THERMODYNAMICS | ENGINEERING, MULTIDISCIPLINARY | TEMPERATURES | PROPAGATION | Gasoline | Toluene | Combustion
Journal Article
Fuel, ISSN 0016-2361, 12/2018, Volume 234, pp. 1469 - 1480
Journal Article
Fuel, ISSN 0016-2361, 01/2014, Volume 117, pp. 340 - 350
Due to their increasing share, the combustion of alternative fuels and in particular oxygenated, bio-derived fuel components need to be characterised. The... 
Laminar burning velocities | n-butanol | Ethanol | n-propanol | Methanol | OXIDATION | COMBUSTION | JET-STIRRED REACTOR | ENERGY & FUELS | ISOOCTANE | MARKSTEIN LENGTHS | MIXTURES | ENGINEERING, CHEMICAL | PREMIXED FLAMES | TEMPERATURE | REACTION-MECHANISM | KINETIC MECHANISM | Alcohol | Alcohol, Denatured | Analysis | Sensitivity analysis | Methyl alcohol | Ethyl alcohol | Mathematical models | Combustion | Fuels | Laminar
Journal Article
Fuel, ISSN 0016-2361, 02/2018, Volume 214, pp. 144 - 153
Dynamic composition changes in the syngas is a challenge for its combustion at elevated temperatures and pressures without accurate knowledge of flame... 
Diverging channel | Synthetic gas | Planar flames | Laminar burning velocity | MIXTURES | SPEED | ENGINEERING, CHEMICAL | COMBUSTION | MECHANISM | ENERGY & FUELS | Analysis | Combustion | Numerical analysis
Journal Article
Fuel, ISSN 0016-2361, 06/2019, Volume 246, pp. 222 - 231
Journal Article
Combustion and Flame, ISSN 0010-2180, 03/2020, Volume 213, pp. 1 - 13
Ammonia (NH ) can be used as carbon-free alternative fuel for modern energy and transportation systems. Co-firing NH with syngas can overcome the high ignition... 
Heat flux method | Ammonia | Kinetic modeling | Laminar burning velocity | Co-firing flame
Journal Article
Fuel, ISSN 0016-2361, 10/2016, Volume 182, pp. 57 - 63
In this paper, the measurement of laminar burning velocities for liquid fuel (methanol)–air mixtures is reported at higher mixture temperatures using... 
Meso-scale diverging channel | Methanol–air mixtures | Laminar burning velocity | Temperature exponent | Methanol-air mixtures | ENGINEERING, CHEMICAL | COMBUSTION | ENERGY & FUELS | FUEL | FLAME SPEEDS | DILUTION | FLOW | Measurement | Methanol | Aerospace engineering
Journal Article