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Fuel (Guildford), 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
Fuel (Guildford), ISSN 0016-2361, 08/2014, Volume 130, pp. 76 - 91
•There is a lack of accurate data of the turbulent burning velocity of methanol mixtures... 
Turbulent burning velocity | Spark-ignition engine | Modeling | Constant volume bomb | Methanol | Engineering | Engineering, Chemical | Technology | Energy & Fuels | Science & Technology | Analysis
Journal Article
Journal of loss prevention in the process industries, ISSN 0950-4230, 2005, Volume 18, Issue 3, pp. 152 - 166
The laminar burning velocity of hydrogen–air mixtures was determined from pressure variations in a windowless explosion vessel... 
Hydrogen | Explosion | Burning velocity | Engineering | Engineering, Chemical | Technology | Science & Technology | Atmospheric turbulence | Analysis | Explosions
Journal Article
Physics of fluids (1994), ISSN 1089-7666, 08/2018, Volume 30, Issue 8, p. 081702
...PHYSICS OF FLUIDS 30, 081702 (2018) Letter: Does flame-generated vorticity increase turbulent burning velocity? A. N. Lipatnikov, 1,a) V. A. Sabelnikov, 2,3... 
Mechanics | Physical Sciences | Physics, Fluids & Plasmas | Technology | Physics | Science & Technology | Turbulence | Turbulent flow | Direct numerical simulation | Computer simulation | Vorticity | Combustion | Burning rate
Journal Article
Proceedings of the Combustion Institute, ISSN 1540-7489, 2011, Volume 33, Issue 1, pp. 895 - 903
Effects of elevated temperatures (up to 573K) and pressures (up to 72bar) on the laminar flame velocity of hydrogen-oxygen-steam mixtures were studied both experimentally and computationally... 
Laminar burning velocity | Hydrogen-oxygen-steam mixtures | Radiolysis gas | Thermodynamics | Engineering | Physical Sciences | Engineering, Chemical | Technology | Energy & Fuels | Engineering, Mechanical | Science & Technology | Hydrogen | Radiolysis | Elevated | Laminar flames | Mathematical analysis | Cinematography | Mathematical models | Combustion | High temperature | Laminar
Journal Article
Combustion and flame, ISSN 0010-2180, 10/2017, Volume 184, pp. 312 - 323
.... The laminar burning velocities (LBVs) were observed to increase in the order of toluene, ethylbenzene and benzene at both atmospheric and high pressures, and the Markstein lengths were evaluated to be similar among the three aromatic fuels... 
Kinetic effect | Pressure effect | Aromatic fuel | Laminar burning velocity | High pressure | Thermodynamics | Engineering | Physical Sciences | Engineering, Chemical | Technology | Engineering, Multidisciplinary | Energy & Fuels | Engineering, Mechanical | Science & Technology | Pyrolysis | Combustion | Benzene | Analysis | Toluene | Investigations | Sensitivity analysis | Computer simulation | Atmospheric models | Chains | Alkanes | Fuels | Flame propagation | Pressure | Coefficient of variation | Chemistry | Ethylbenzene | Kinetics
Journal Article
Fuel (Guildford), ISSN 0016-2361, 2007, Volume 86, Issue 15, pp. 2360 - 2366
Measurement of laminar burning velocity of dimethyl ether–air mixtures was taken under different initial pressures and equivalence ratios using a constant volume bomb and high-speed schlieren photography... 
Measurement | Dimethyl ether | Burning velocity | Engineering | Engineering, Chemical | Technology | Energy & Fuels | Science & Technology | Methyl ether
Journal Article