The effects of freestream density ratio on the mixing and combustion in a high Reynolds number, subsonic, gas-phase, non-buoyant, two-dimensional turbulent mixing layer, have been investigated. Measurements of temperature rise (heat release) have been made which enable us to examine the effect of freestream density ratio on several aspects of the mixed fluid state within the turbulent combustion region. In experiments with very high and very low stoichiometric mixture ratios ("flip" experiments), the heat release from an exothermic reaction serves as a quantitative label for the lean reactant freestream fluid that becomes molecularly mixed. Properly normalized, the sum of the mean temperature rise profiles of the two flip exp...
The present work carries out large-eddy simulations of the low-speed, high-Reynolds number, chemical...
This paper reports results on molecular mixing for injection via an expansion-ramp into a supersonic...
Experiments have been conducted in the GALCIT Supersonic Shear Layer Facility to investigate some as...
The effects of freestream density ratio on the mixing and combustion in a high Reynolds number, su...
Several aspects of mixing and reaction in a turbulent two-dimensional shear layer have been studied....
This is a continuing effort in both gas phase and liquid phase mixing, chemical reactions and combus...
Turbulent mixing and combustion are investigated in a gaseous shear layer formed between two streams...
Experiments were conducted to study the effects of heat release in a planar, gas-phase, reacting mix...
The effects of heat release were studied in a planar, gaseous reacting mixing layer formed between t...
A chemical reaction for which the reaction rate can be varied is studied in a fully developed, two-d...
A fully second-order closure model for turbulent reacting flows is suggested based on Favre statisti...
The effects of heat release were studied in a planar, gaseous reacting mixing layer formed between f...
A direct numerical simulation of high speed reacting and non-reacting flows for H2-air systems is pr...
Two-dimensional numerical simulations of a temporally evolving mixing layer with an exothermic infin...
The effects of compressibility, chemical reaction exothermicity, and non-equilibrium chemical modeli...
The present work carries out large-eddy simulations of the low-speed, high-Reynolds number, chemical...
This paper reports results on molecular mixing for injection via an expansion-ramp into a supersonic...
Experiments have been conducted in the GALCIT Supersonic Shear Layer Facility to investigate some as...
The effects of freestream density ratio on the mixing and combustion in a high Reynolds number, su...
Several aspects of mixing and reaction in a turbulent two-dimensional shear layer have been studied....
This is a continuing effort in both gas phase and liquid phase mixing, chemical reactions and combus...
Turbulent mixing and combustion are investigated in a gaseous shear layer formed between two streams...
Experiments were conducted to study the effects of heat release in a planar, gas-phase, reacting mix...
The effects of heat release were studied in a planar, gaseous reacting mixing layer formed between t...
A chemical reaction for which the reaction rate can be varied is studied in a fully developed, two-d...
A fully second-order closure model for turbulent reacting flows is suggested based on Favre statisti...
The effects of heat release were studied in a planar, gaseous reacting mixing layer formed between f...
A direct numerical simulation of high speed reacting and non-reacting flows for H2-air systems is pr...
Two-dimensional numerical simulations of a temporally evolving mixing layer with an exothermic infin...
The effects of compressibility, chemical reaction exothermicity, and non-equilibrium chemical modeli...
The present work carries out large-eddy simulations of the low-speed, high-Reynolds number, chemical...
This paper reports results on molecular mixing for injection via an expansion-ramp into a supersonic...
Experiments have been conducted in the GALCIT Supersonic Shear Layer Facility to investigate some as...