International audienceA two-staged swirling burner is numerically simulated through large eddy simulations. The impact of the liquid phase modeling approach is evaluated comparing the Eulerian and Lagrangian frameworks for two different operation points, full pilot injection and full multipoint injection. For the full multipoint injection, since the operation point is closer to a Lean Premixed Prevaporized (LPP) regime, both liquid phase models present similar flame structure (an M flame). For the full pilot injection, Eulerian and Lagrangian approaches result in different flames for equivalent boundary conditions: the Eulerian simulation produces a ‘tulip’ flame, while the Lagrangian spray forms a lifted flame. To assess the model sensitiv...
International audienceAn extension of the large eddy simulation (LES) technique to two-phase reactin...
International audienceAn extension of the large eddy simulation (LES) technique to two-phase reactin...
International audienceAn extension of the large eddy simulation (LES) technique to two-phase reactin...
International audienceA two-staged swirling burner is numerically simulated through large eddy simul...
International audienceA two-staged swirling burner is numerically simulated through large eddy simul...
International audienceA two-staged swirling burner is numerically simulated through large eddy simul...
A two-staged swirling burner is numerically simulated using Large Eddy Simulation (LES). This combus...
International audienceA two-staged swirling burner is numerically simulated using Large Eddy Simulat...
International audienceA two-staged swirling burner is numerically simulated using Large Eddy Simulat...
International audienceA two-staged swirling burner is numerically simulated using Large Eddy Simulat...
International audienceA two-staged swirling burner is numerically simulated using Large Eddy Simulat...
International audienceA laboratory-scale swirling burner fueled with dodecane is studied numerically...
International audienceA laboratory-scale swirling burner fueled with dodecane is studied numerically...
International audienceA laboratory-scale swirling burner fueled with dodecane is studied numerically...
Large-Eddy Simulations (LES) of an evaporating two-phase flow in an experimental burner are performe...
International audienceAn extension of the large eddy simulation (LES) technique to two-phase reactin...
International audienceAn extension of the large eddy simulation (LES) technique to two-phase reactin...
International audienceAn extension of the large eddy simulation (LES) technique to two-phase reactin...
International audienceA two-staged swirling burner is numerically simulated through large eddy simul...
International audienceA two-staged swirling burner is numerically simulated through large eddy simul...
International audienceA two-staged swirling burner is numerically simulated through large eddy simul...
A two-staged swirling burner is numerically simulated using Large Eddy Simulation (LES). This combus...
International audienceA two-staged swirling burner is numerically simulated using Large Eddy Simulat...
International audienceA two-staged swirling burner is numerically simulated using Large Eddy Simulat...
International audienceA two-staged swirling burner is numerically simulated using Large Eddy Simulat...
International audienceA two-staged swirling burner is numerically simulated using Large Eddy Simulat...
International audienceA laboratory-scale swirling burner fueled with dodecane is studied numerically...
International audienceA laboratory-scale swirling burner fueled with dodecane is studied numerically...
International audienceA laboratory-scale swirling burner fueled with dodecane is studied numerically...
Large-Eddy Simulations (LES) of an evaporating two-phase flow in an experimental burner are performe...
International audienceAn extension of the large eddy simulation (LES) technique to two-phase reactin...
International audienceAn extension of the large eddy simulation (LES) technique to two-phase reactin...
International audienceAn extension of the large eddy simulation (LES) technique to two-phase reactin...