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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
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
Fuel, ISSN 0016-2361, 06/2019, Volume 246, pp. 222 - 231
Journal Article
Combustion and Flame, ISSN 0010-2180, 10/2017, Volume 184, pp. 312 - 323
The laminar flame propagation of benzene, toluene and ethylbenzene was investigated at  = 423 K,  = 1–20 atm and various equivalence ratios in a high-pressure... 
Kinetic effect | Pressure effect | Aromatic fuel | Laminar burning velocity | High pressure | AIR MIXTURES | COMBUSTION | HYDROCARBONS | ENERGY & FUELS | ELEVATED PRESSURES | MARKSTEIN LENGTHS | FLAME SPEEDS | ENGINEERING, MECHANICAL | SURROGATE COMPONENTS | ENGINEERING, CHEMICAL | THERMODYNAMICS | ENGINEERING, MULTIDISCIPLINARY | FUEL | EXTINCTION STRETCH RATES | PROPAGATION | Pyrolysis | Combustion | Benzene | Analysis | Toluene | Investigations
Journal Article
Fuel, ISSN 0016-2361, 10/2015, Volume 157, pp. 162 - 170
Laminar burning velocities, , of methyl formate and air flames were determined at atmospheric pressure and initial gas temperatures, , of 298, 318, 338 and 348... 
Temperature dependence | Sensitivity analysis | Methyl formate | Burning velocity | Esters | Analysis | Combustion
Journal Article
Combustion and Flame, ISSN 0010-2180, 10/2018, Volume 196, pp. 99 - 107
Laminar burning velocities of methylcyclohexane + air flames were determined using the heat flux method at atmospheric pressure and initial temperatures of... 
Methylcyclohexane | Modeling | Burning velocity | Flame | Methane | Combustion | Fuel and fuel systems | Comparative analysis | Jet planes
Journal Article
Progress in Energy and Combustion Science, ISSN 0360-1285, 2008, Volume 34, Issue 1, pp. 91 - 134
Journal Article
Energy, ISSN 0360-5442, 05/2017, Volume 126, pp. 34 - 41
This paper reports the measurement of laminar burning velocities of DME (dimethyl ether)-air mixtures at higher mixture temperatures using planar flames... 
Dimethyl ether flames | Diverging channel | Planar flames | Laminar burning velocity | AIR MIXTURES | THERMODYNAMICS | ENERGY & FUELS | DILUTION | Methyl ether | Chemical reaction, Rate of | Mechanical engineering | Analysis | Aerospace engineering
Journal Article
International Journal of Hydrogen Energy, ISSN 0360-3199, 2006, Volume 31, Issue 12, pp. 1768 - 1779
The laminar burning velocities of hydrogen–air and hydrogen–methane–air mixtures are very important in designing and predicting the progress of combustion and... 
Hydrogen–methane composite fuel | Schlieren photography | Cardiff explosion vessel | Burning velocity | Hydrogen-methane composite fuel | Methane | Atmospheric turbulence | Clouds | Steel, Stainless | Analysis | Combustion | Universities and colleges | Mechanical engineering
Journal Article
Combustion and Flame, ISSN 0010-2180, 02/2018, Volume 188, pp. 367 - 375
Investigation of turbulent burning velocity ( ) of methane–air–dust premixed flames with different dust types (coal, sand and sodium bicarbonate) and dust... 
Particle | Turbulent | Premixed flame | Dust Concentration | Coal | Burning velocity | COMBUSTION | PARTICLES | ENERGY & FUELS | COAL-DUST | ENGINEERING, MECHANICAL | DROPLETS | AMBIENT TURBULENCE | ENGINEERING, CHEMICAL | EVAPORATION | THERMODYNAMICS | ENGINEERING, MULTIDISCIPLINARY | FLOWS | Methane | Sodium bicarbonate | Turbulence | Carbonates | Analysis
Journal Article
Fuel, ISSN 0016-2361, 07/2016, Volume 175, pp. 302 - 309
Laminar burning velocities, , of benzene + air flames were determined at atmospheric pressure and initial gas temperatures, , of 298, 318, 338 and 358 K.... 
Temperature dependence | Modelling | Benzene | Burning velocity | Analysis | Combustion | Engineering and Technology | Energy Engineering | Energiteknik | Mechanical Engineering | Maskinteknik | Teknik
Journal Article