Combustion Science and Technology · 1994 · 65 citations · 6 references
Laminar FlameLinear CorrectionEngineeringAdiabatic Burning VelocityAerospace EngineeringCombustion ScienceCombustion TheoryCombustion EngineeringTurbulent FlameThermodynamicsCounterflow MethodHeat TransferHeat Flux MethodThermal EngineeringPremixed Turbulent FlamePropane-air Flames
Abstract Results of measured adiabatic burning velocities of methane- and propane-air premixed laminar flames are presented, as obtained by the Heat Flux method. A comparison is made with results of the Counterflow method. The effect on the Counterflow method results of a non-linear instead of a linear correction for stretch is estimated. With a non-linear correction the agreement between both methods is good. It can be concluded that non-linear correction for stretch on the results of the Counterflow method is necessary in general. However, its effect may vary with varying fuel gas.
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Flames as gasdynamic discontinuities
Moshe Matalon, B. J. Matkowsky · Journal of Fluid Mechanics · 1982 · 702 citations
Laminar Flame, Engineering, Physics +15
G. Dixon-Lewis · Symposium (International) on Combustion · 1991 · 159 citations