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Fuel, ISSN 0016-2361, 04/2018, Volume 217, pp. 160 - 165
.... However, to ensure proper and profitable application of this fuel, we must clarify the combustion characteristics of the DME–N2O mixture... 
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
Fuel, ISSN 0016-2361, 10/2016, Volume 182, pp. 57 - 63
•Meso-scale diverging channel method extended for the first time toward measurements of laminar burning velocity of liquid fuel–air mixture (methanol... 
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
Journal of Loss Prevention in the Process Industries, ISSN 0950-4230, 05/2012, Volume 25, Issue 3, pp. 443 - 447
Journal Article
Combustion and Flame, ISSN 0010-2180, 2011, Volume 158, Issue 2, pp. 345 - 353
This work experimentally investigates the effect of the presence of water vapor on the laminar flame speeds of moist syngas/air mixtures using the counterflow twin-flame configuration... 
Carbon monoxide | Laminar flame speed | Hydrogen | Moist syngas | BURNING VELOCITY | LIMITS | COMBUSTION | ENERGY & FUELS | PRESSURE-DEPENDENCE | KINETIC-MODEL | ENGINEERING, MECHANICAL | ENGINEERING, CHEMICAL | THERMODYNAMICS | ENGINEERING, MULTIDISCIPLINARY | TEMPERATURE | CARBON-MONOXIDE | EXTINCTION | DILUTION | Mechanical engineering | Analysis | Aerospace engineering
Journal Article
Combustion and Flame, ISSN 0010-2180, 09/2013, Volume 160, Issue 9, pp. 1627 - 1635
In spite of the large amount of research spent on the evaluation of the high pressure dependence of laminar burning velocity of methane+air flame, there still... 
Heat flux method | Methane combustion | Laminar burning velocity | Methane | Analysis | Pressure dependence | Correlation | Equivalence ratio | Computer simulation | Mathematical models | Combustion | Laminar
Journal Article
Fuel, ISSN 0016-2361, 10/2015, Volume 158, pp. 217 - 223
Journal Article
Fuel, ISSN 0016-2361, 10/2015, Volume 158, pp. 1 - 10
...–air mixtures are provided. Measurements on laminar flame speeds and ignition delay times of methane/air mixtures at elevated pressures and temperatures were carried out in a constant volume bomb and shock tube... 
Correlation | Ignition delay time | Sensitivity analysis | Laminar flame speed | Reaction order | Elevated pressures and temperatures | BURNING VELOCITY | COMBUSTION | SHOCK-TUBE | ENERGY & FUELS | MARKSTEIN LENGTHS | OXYGENATED FUELS | ENGINEERING, CHEMICAL | HYDROGEN | PREMIXED FLAMES | INTERMEDIATE | ENGINE-RELEVANT CONDITIONS | HYDROCARBON
Journal Article
Fuel, ISSN 0016-2361, 12/2016, Volume 185, pp. 18 - 25
....•The effect of heat loss on the explosion propagation of syngas/air mixtures is estimated. The pressure history in the explosion syngas/air mixtures with H2O addition... 
Pressure history | H2O addition | Deflagration index | Syngas | O addition | COMBUSTION | SPARK-IGNITION ENGINE | ENERGY & FUELS | BURNING VELOCITIES | GAS-EXPLOSIONS | RISE | ENGINEERING, CHEMICAL | SPHERICAL VESSELS | FLAME TEMPERATURE | CYLINDRICAL ENCLOSURES | HYDROGEN-AIR MIXTURES | CLOSED VESSELS | Analysis | Explosions | Combustion | History
Journal Article
International Journal of Hydrogen Energy, ISSN 0360-3199, 06/2014, Volume 39, Issue 17, pp. 9562 - 9572
Journal Article
Fuel, ISSN 0016-2361, 02/2019, Volume 237, pp. 10 - 17
[Display omitted] •Laminar burning velocity measurements of n-pentanol-air mixtures at high temperatures measured using diverging channel method... 
Pentanol-biofuel | Meso-scale channel | Skeletal mechanism | Laminar burning velocity | Measurement | Biomass energy | Analysis | Combustion | Mechanical engineering | Alcohols | Aerospace engineering | Temperature | Atmospheric pressure | Atmospheric models | Chains | High temperature | Fuels | Velocity | Burning | Temperature effects | Dependence | Mesoscale phenomena
Journal Article