International audienceA multi-physics simulation combining large-eddy simulation, conjugate heat transfer and radiative heat transfer is used to predict the wall temperature field of a confined premixed swirling flame operating under atmospheric pressure. The combustion model accounts for the effect of enthalpy defect on the flame structure whose stabilization is here sensitive to the wall heat losses. The conjugate heat transfer is accounted for by solving the heat conduction within the combustor walls and with the Hybrid-Cell Neumann-Dirichlet coupling method, enabling to dynamically adapt the coupling period. The latter coupling procedure is enhanced to determine statistics (mean, RMS,. . .) in a permanent regime accurately and efficient...
AbstractThe presented work addresses the investigation of the heat loss of a confined turbulent jet ...
Abstract in Undetermined A series of comprehensive large eddy simulations of non-premixed turbulent ...
International audienceRadiative heat transfer is known to play an important role in combustion proce...
International audienceA multi-physics simulation combining large-eddy simulation, conjugate heat tra...
International audienceA multi-physics simulation combining large-eddy simulation , conjugate heat tr...
Conjugate Heat Transfer; Large Eddy Simulation; Thermoacoustic instabilities; Turbulent flame
La prédiction des flux aux parois joue un rôle déterminant dans le cycle de vie des chambres de comb...
A numerical assessment of different thermal conditions for an impinging flame configuration is inves...
Large eddy simulations (LES) of combustion instabilities are often performed with simplified thermal...
The presented work addresses the investigation of the heat loss of a confined turbulent jet flame in...
International audienceThe application of large-eddy simulations to conjugate heat transfer problems ...
The prediction of wall fluxes is a significant aspect in the life cycle of combustors, since it allo...
AbstractThe presented work addresses the investigation of the heat loss of a confined turbulent jet ...
Abstract in Undetermined A series of comprehensive large eddy simulations of non-premixed turbulent ...
International audienceRadiative heat transfer is known to play an important role in combustion proce...
International audienceA multi-physics simulation combining large-eddy simulation, conjugate heat tra...
International audienceA multi-physics simulation combining large-eddy simulation , conjugate heat tr...
Conjugate Heat Transfer; Large Eddy Simulation; Thermoacoustic instabilities; Turbulent flame
La prédiction des flux aux parois joue un rôle déterminant dans le cycle de vie des chambres de comb...
A numerical assessment of different thermal conditions for an impinging flame configuration is inves...
Large eddy simulations (LES) of combustion instabilities are often performed with simplified thermal...
The presented work addresses the investigation of the heat loss of a confined turbulent jet flame in...
International audienceThe application of large-eddy simulations to conjugate heat transfer problems ...
The prediction of wall fluxes is a significant aspect in the life cycle of combustors, since it allo...
AbstractThe presented work addresses the investigation of the heat loss of a confined turbulent jet ...
Abstract in Undetermined A series of comprehensive large eddy simulations of non-premixed turbulent ...
International audienceRadiative heat transfer is known to play an important role in combustion proce...