Experiments were conducted to study the effects of heat release in a planar, gas-phase, reacting mixing layer formed between two free streams, one containing hydrogen in an inert diluent, the other, fluorine in an inert diluent. Sufficiently high concentrations of reactants were utilized to produce adiabatic flame temperature rises of up to 940 K (corresponding to 1240 K absolute). The temperature field was measured at eight fixed points across the layer. Flow visualization was accomplished by schlieren spark and motion picture photography. Mean velocity information was extracted from Pitot-probe dynamic pressure measurements. The results showed that the growth rate of the layer, for conditions of zero streamwise pressure gradient, decre...
The temperature field is investigated in a gaseous, reacting mixing layer between two streams contai...
We report on the results from a set of incompressible, shear-layer flow experiments, at high Reynold...
The flow field in a hydrogen-fueled planar reacting shear layer was measured with an LDV system and ...
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 f...
The effects of heat release were studied in a planar, gaseous reacting mixing layer formed between t...
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...
Two-dimensional numerical simulations of a temporally evolving mixing layer with an exothermic infin...
A fully second-order closure model for turbulent reacting flows is suggested based on Favre statisti...
A direct numerical simulation of high speed reacting and non-reacting flows for H2-air systems is pr...
A chemical reaction for which the reaction rate can be varied is studied in a fully developed, two-d...
The effects of freestream density ratio on the mixing and combustion in a high Reynolds number, su...
The present work carries out large-eddy simulations of the low-speed, high-Reynolds number, chemical...
The temperature field is investigated in a gaseous mixing layer consisting of low-concentration hydr...
The temperature field is investigated in a gaseous, reacting mixing layer between two streams contai...
We report on the results from a set of incompressible, shear-layer flow experiments, at high Reynold...
The flow field in a hydrogen-fueled planar reacting shear layer was measured with an LDV system and ...
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 f...
The effects of heat release were studied in a planar, gaseous reacting mixing layer formed between t...
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...
Two-dimensional numerical simulations of a temporally evolving mixing layer with an exothermic infin...
A fully second-order closure model for turbulent reacting flows is suggested based on Favre statisti...
A direct numerical simulation of high speed reacting and non-reacting flows for H2-air systems is pr...
A chemical reaction for which the reaction rate can be varied is studied in a fully developed, two-d...
The effects of freestream density ratio on the mixing and combustion in a high Reynolds number, su...
The present work carries out large-eddy simulations of the low-speed, high-Reynolds number, chemical...
The temperature field is investigated in a gaseous mixing layer consisting of low-concentration hydr...
The temperature field is investigated in a gaseous, reacting mixing layer between two streams contai...
We report on the results from a set of incompressible, shear-layer flow experiments, at high Reynold...
The flow field in a hydrogen-fueled planar reacting shear layer was measured with an LDV system and ...