International audienceThis paper presents and discusses some scaling laws which have to be considered within the framework of fire-induced smoke simulation using a buoyant release at lower scale. The correspondences between the fire and the buoyant release are supposed known and then, for a size reduction, dimensionless numbers are obtained from the buoyant jet momentum equation. It then appears, theoretically, that the single Froude similitude used in many laboratory experiments is inadequate for fire problems when the Boussinesq approximation cannot be considered. Indeed, in that case, the density difference between the released fluid and the ambient fluid has to be the same for both full and reduced scales. An alternative theoretical jus...
Flows driven by density differences, whether natural or induced by man, surround us on a wide range ...
The role of combustion research in fire safety is revisited through the process of Scaling-Up fire. ...
This paper presents a computational and experimental study of fire growth and smoke movement in larg...
International audienceThis paper presents and discusses some scaling laws which have to be considere...
A partial non-dimensionalization of the Navier-Stokes equations is used to obtain order of magnitude...
The paper describes the design of a fire and a smoke source for scale-model experiments with smoke v...
Fire is a phenomenon that covers a multiplicity of scales depending on the different processes invo...
Mathematical models of the convective transport induced by large fires are presented. The models are...
Most of the current jet fire models used in the accidental fire risks department are semi-empirical....
PresentationThe use of computational fluid dynamics (CFD) for understanding the fire hazard potentia...
This paper uses the scaling laws obtained from a Froude Modeling perspective to analyze the variati...
The transient development of the smoke layer due to a steady fire source in cubic atria was studied ...
A length scale, which represents the physics of the outflow through the opening of an enclosure fire...
International audienceThe possibility of using a reduced-scale model based on the Froude-scaling tec...
Accidental fires resulting from fuel spills and tank explosions commonly burn as pool fires. These f...
Flows driven by density differences, whether natural or induced by man, surround us on a wide range ...
The role of combustion research in fire safety is revisited through the process of Scaling-Up fire. ...
This paper presents a computational and experimental study of fire growth and smoke movement in larg...
International audienceThis paper presents and discusses some scaling laws which have to be considere...
A partial non-dimensionalization of the Navier-Stokes equations is used to obtain order of magnitude...
The paper describes the design of a fire and a smoke source for scale-model experiments with smoke v...
Fire is a phenomenon that covers a multiplicity of scales depending on the different processes invo...
Mathematical models of the convective transport induced by large fires are presented. The models are...
Most of the current jet fire models used in the accidental fire risks department are semi-empirical....
PresentationThe use of computational fluid dynamics (CFD) for understanding the fire hazard potentia...
This paper uses the scaling laws obtained from a Froude Modeling perspective to analyze the variati...
The transient development of the smoke layer due to a steady fire source in cubic atria was studied ...
A length scale, which represents the physics of the outflow through the opening of an enclosure fire...
International audienceThe possibility of using a reduced-scale model based on the Froude-scaling tec...
Accidental fires resulting from fuel spills and tank explosions commonly burn as pool fires. These f...
Flows driven by density differences, whether natural or induced by man, surround us on a wide range ...
The role of combustion research in fire safety is revisited through the process of Scaling-Up fire. ...
This paper presents a computational and experimental study of fire growth and smoke movement in larg...