A three-dimensional (3D) simulation of N2/H2 mixing for a coaxial injector under a supercritical pressure of 10 MPa is conducted using a highorder numerical method. Two outer H2 jets with injection temperatures of approximately 52 and 462 K are applied while an inner N2 jet with an injection temperature of approximately 97 K is applied. The mean and fluctuation properties and instantaneous flow fields are discussed in order to characterize the detailed mixing features for the two injection conditions. A clear dependence of dense-core length on the momentum flux ratio is also demonstrated
Understanding turbulent round-jet flow dynamics at supercritical pressures is crucial to controlling...
Understanding turbulent round-jet flow dynamics at supercritical pressures is crucial to controlling...
The objective of this study was to numerically investigate the mixing characteristics of two and thr...
The modeling of fluids in the supercritical regime is addressed at conditions characteristic of liqu...
In the present manuscript, we report on the numerical simulation of coaxial nitrogen injection under...
The mixing process and distribution characteristics of a supercritical endothermic hydrocarbon fuel ...
Fuel injection and turbulent mixing at supercritical pressures determines ignition and combustion in...
Transcritical and supercritical coaxial injection is modelled for a nitrogen-hydrogen coaxial config...
To analyze the supercritical mixing behavior of a two-phase flow a coaxial flow of two gases with va...
The computation of compressible coaxial jets has moved into the field of interest not only in fundam...
Theoretical and experimental studies have been performed on propellant injection problems in high pr...
In rocket engines, dense oxygen is injected in a high-pressure environment, above its critical press...
Direct numerical simulations (DNS) are performed to investigate mixing in free round coaxial jets. A...
Increasing the fuel mixing performance substantially improves the overall performance of the scramje...
The present paper addresses the modelling of fuel injection at conditions of high pressure and tempe...
Understanding turbulent round-jet flow dynamics at supercritical pressures is crucial to controlling...
Understanding turbulent round-jet flow dynamics at supercritical pressures is crucial to controlling...
The objective of this study was to numerically investigate the mixing characteristics of two and thr...
The modeling of fluids in the supercritical regime is addressed at conditions characteristic of liqu...
In the present manuscript, we report on the numerical simulation of coaxial nitrogen injection under...
The mixing process and distribution characteristics of a supercritical endothermic hydrocarbon fuel ...
Fuel injection and turbulent mixing at supercritical pressures determines ignition and combustion in...
Transcritical and supercritical coaxial injection is modelled for a nitrogen-hydrogen coaxial config...
To analyze the supercritical mixing behavior of a two-phase flow a coaxial flow of two gases with va...
The computation of compressible coaxial jets has moved into the field of interest not only in fundam...
Theoretical and experimental studies have been performed on propellant injection problems in high pr...
In rocket engines, dense oxygen is injected in a high-pressure environment, above its critical press...
Direct numerical simulations (DNS) are performed to investigate mixing in free round coaxial jets. A...
Increasing the fuel mixing performance substantially improves the overall performance of the scramje...
The present paper addresses the modelling of fuel injection at conditions of high pressure and tempe...
Understanding turbulent round-jet flow dynamics at supercritical pressures is crucial to controlling...
Understanding turbulent round-jet flow dynamics at supercritical pressures is crucial to controlling...
The objective of this study was to numerically investigate the mixing characteristics of two and thr...