The objective of this work is to use the Fire Dynamics Simulator (FDS) to investigate the behavior of a kerosene small-scale fire. FDS is a Computational Fluid Dynamics (CFD) tool developed specifically for fire applications. Throughout its development, FDS is used for the resolution of practical problems in fire protection engineering. At the same time FDS is used to study fundamental fire dynamics and combustion. Predictions are based on Large Eddy Simulation (LES) with a Smagorinsky turbulence model. LES directly computes the large-scale eddies and the sub-grid scale dissipative processes are modeled. This technique is the default turbulence model which was used in this study. The validation of the numerical prediction is done using a di...
Fire and smoke in enclosed spaces behave differently from those in open ones. Depending on scenario ...
Accurate prediction of the consequence of fire is crucial for fire safety analysis and assessment of...
Fire and smoke in enclosed spaces behave differently from those in open ones. Depending on scenario ...
The objective of this work is to use the Fire Dynamics Simulator (FDS) to investigate the behavior o...
The purpose of the present study is to explore and validate the efficiency and accuracy of the predi...
Abstract. The purpose of the present study is to explore and validate the efficiency and accuracy of...
Abstract. The purpose of the present study is to explore and validate the efficiency and accuracy of...
Obtaining grid independent results for compartment fires using a computational fluid dynamics (CFD) ...
An in-house large eddy simulation (LES) based fire field model has been developed for large-scale co...
An approach to the study of gas phase combustion and convec-tion processes in fires using a combinat...
The selected fire scenario corresponds to the Propagation d’un Incendie pour des Scenarios Multi-loc...
In this dissertation a study of numerical simulations of turbulent diffusion flames and pool fires i...
This article presents a large eddy simulation study of a pool fire in a well-confined and mechanical...
In this dissertation a study of numerical simulations of turbulent diffusion flames and pool fires i...
A method of studying the large scale transport of smoke and hot gases induced by fires in enclosures...
Fire and smoke in enclosed spaces behave differently from those in open ones. Depending on scenario ...
Accurate prediction of the consequence of fire is crucial for fire safety analysis and assessment of...
Fire and smoke in enclosed spaces behave differently from those in open ones. Depending on scenario ...
The objective of this work is to use the Fire Dynamics Simulator (FDS) to investigate the behavior o...
The purpose of the present study is to explore and validate the efficiency and accuracy of the predi...
Abstract. The purpose of the present study is to explore and validate the efficiency and accuracy of...
Abstract. The purpose of the present study is to explore and validate the efficiency and accuracy of...
Obtaining grid independent results for compartment fires using a computational fluid dynamics (CFD) ...
An in-house large eddy simulation (LES) based fire field model has been developed for large-scale co...
An approach to the study of gas phase combustion and convec-tion processes in fires using a combinat...
The selected fire scenario corresponds to the Propagation d’un Incendie pour des Scenarios Multi-loc...
In this dissertation a study of numerical simulations of turbulent diffusion flames and pool fires i...
This article presents a large eddy simulation study of a pool fire in a well-confined and mechanical...
In this dissertation a study of numerical simulations of turbulent diffusion flames and pool fires i...
A method of studying the large scale transport of smoke and hot gases induced by fires in enclosures...
Fire and smoke in enclosed spaces behave differently from those in open ones. Depending on scenario ...
Accurate prediction of the consequence of fire is crucial for fire safety analysis and assessment of...
Fire and smoke in enclosed spaces behave differently from those in open ones. Depending on scenario ...