A numerical study simulating the temporal vortical structures of a large-scale buoyant pool fire has been carried out using a fully-coupled Large Eddy Simulation (LES) model which incorporates all essential subgrid scale (SGS) turbulence, combustion, radiation and soot chemistry considerations. Based on the strained laminar flamelet approach, a scalar dissipation conditioned SGS combustion model is introduced to distinguish the highly non-equilibrating burn and extinguishment of flamelets commonly found in pool fires. Numerical results from the present model are validated and compared against a one-meter diameter methane pool fire experimental data and predictions from other LES field models. The predicted time-averaged velocity and tempera...
International audienceThe objective of this work is to investigate the effects of Turbulence-Radiati...
© 2018 The Combustion Institute. Focusing on advancing predictive fire modeling, large eddy simulati...
This article presents a large eddy simulation study of a pool fire in a well-confined and mechanical...
In attempting to capture the non-linearity of the fire turbulent flow structures, a fully-coupled La...
Accurate prediction of the consequence of fire is crucial for fire safety analysis and assessment of...
In this dissertation a study of numerical simulations of turbulent diffusion flames and pool fires i...
In this dissertation a study of numerical simulations of turbulent diffusion flames and pool fires i...
While all fires are complex and involve many phenomena, this report is limited to large, turbulent l...
Large eddy simulation has been applied to the prediction of a small pool fire experimentally tested ...
A numerical study investigating the flickering behavior of a turbulent buoyant fire is conducted usi...
Large eddy simulations are conducted in the near-field region of a large turbulent buoyant helium pl...
Large eddy simulations are conducted in the near-field region of a large turbulent buoyant helium pl...
An approach to the study of gas phase combustion and convection processes in fires using a combinati...
An in-house large eddy simulation (LES) based fire field model has been developed for large-scale co...
Large eddy simulations of large-scale CH4 fire plumes (1.59-2.61 MW) with two different CFD packages...
International audienceThe objective of this work is to investigate the effects of Turbulence-Radiati...
© 2018 The Combustion Institute. Focusing on advancing predictive fire modeling, large eddy simulati...
This article presents a large eddy simulation study of a pool fire in a well-confined and mechanical...
In attempting to capture the non-linearity of the fire turbulent flow structures, a fully-coupled La...
Accurate prediction of the consequence of fire is crucial for fire safety analysis and assessment of...
In this dissertation a study of numerical simulations of turbulent diffusion flames and pool fires i...
In this dissertation a study of numerical simulations of turbulent diffusion flames and pool fires i...
While all fires are complex and involve many phenomena, this report is limited to large, turbulent l...
Large eddy simulation has been applied to the prediction of a small pool fire experimentally tested ...
A numerical study investigating the flickering behavior of a turbulent buoyant fire is conducted usi...
Large eddy simulations are conducted in the near-field region of a large turbulent buoyant helium pl...
Large eddy simulations are conducted in the near-field region of a large turbulent buoyant helium pl...
An approach to the study of gas phase combustion and convection processes in fires using a combinati...
An in-house large eddy simulation (LES) based fire field model has been developed for large-scale co...
Large eddy simulations of large-scale CH4 fire plumes (1.59-2.61 MW) with two different CFD packages...
International audienceThe objective of this work is to investigate the effects of Turbulence-Radiati...
© 2018 The Combustion Institute. Focusing on advancing predictive fire modeling, large eddy simulati...
This article presents a large eddy simulation study of a pool fire in a well-confined and mechanical...