A transitional hydrogen–air non-premixed impinging jet flame is studied using three-dimensional direct numerical simulation (DNS) and flamelet generated manifolds (FGM) based on detailed chemical kinetics. The simulations are used to investigate the buoyancy instability and the spatial and temporal patterns of the impinging jet flame. The computational domain employed has a size of 4 jet diameters in the streamwise direction and 12 jet diameters in the cross-streamwise direction. The results presented in this study were performed using a uniform Cartesian grid with 200 × 600 × 600 points. Reynolds number used was Re = 2000, based on the inlet reference quantities. The spatial discretisation was carried out using a sixth-order accurate compa...
Hydrogen/carbon monoxide syngas non-premixed impinging jet flames were studied using three-dimension...
Large-eddy simulations (LES) of non-premixed hydrogen impinging flames using different chemical kine...
In this work, buoyancy effects on non-premixing impinging jet flames were studied using three-dimens...
A transitional hydrogen–air non-premixed impinging jet flame is studied using three-dimensional dire...
A transitional hydrogen–air non-premixed impinging jet flame is studied using three-dimensional dire...
A transitional hydrogen–air non-premixed impinging jet flame is studied using three-dimensional dire...
A transitional hydrogen–air non-premixed impinging jet flame is studied using three-dimensional dire...
A transitional hydrogen–air non-premixed impinging jet flame is studied using three-dimensional dire...
Investigations of the flame–vortex and flame–wall interactions have been performed for hydrogen impi...
Investigations of the flame–vortex and flame–wall interactions have been performed for hydrogen impi...
Investigations of the flame–vortex and flame–wall interactions have been performed for hydrogen impi...
Investigations of the flame–vortex and flame–wall interactions have been performed for hydrogen impi...
Investigations of the flame–vortex and flame–wall interactions have been performed for hydrogen impi...
Investigations of the flame-vortex and flame-wall interactions have been performed for hydrogen impi...
AbstractTwo and three dimensional Direct Numerical Simulations have been performed respectively to g...
Hydrogen/carbon monoxide syngas non-premixed impinging jet flames were studied using three-dimension...
Large-eddy simulations (LES) of non-premixed hydrogen impinging flames using different chemical kine...
In this work, buoyancy effects on non-premixing impinging jet flames were studied using three-dimens...
A transitional hydrogen–air non-premixed impinging jet flame is studied using three-dimensional dire...
A transitional hydrogen–air non-premixed impinging jet flame is studied using three-dimensional dire...
A transitional hydrogen–air non-premixed impinging jet flame is studied using three-dimensional dire...
A transitional hydrogen–air non-premixed impinging jet flame is studied using three-dimensional dire...
A transitional hydrogen–air non-premixed impinging jet flame is studied using three-dimensional dire...
Investigations of the flame–vortex and flame–wall interactions have been performed for hydrogen impi...
Investigations of the flame–vortex and flame–wall interactions have been performed for hydrogen impi...
Investigations of the flame–vortex and flame–wall interactions have been performed for hydrogen impi...
Investigations of the flame–vortex and flame–wall interactions have been performed for hydrogen impi...
Investigations of the flame–vortex and flame–wall interactions have been performed for hydrogen impi...
Investigations of the flame-vortex and flame-wall interactions have been performed for hydrogen impi...
AbstractTwo and three dimensional Direct Numerical Simulations have been performed respectively to g...
Hydrogen/carbon monoxide syngas non-premixed impinging jet flames were studied using three-dimension...
Large-eddy simulations (LES) of non-premixed hydrogen impinging flames using different chemical kine...
In this work, buoyancy effects on non-premixing impinging jet flames were studied using three-dimens...