Transport of larger smoke particles generated by a fire in a compartment is studied. An atrium fire with three different heat release rates is taken as an example. The air flow pattern and temperature contours are predicted by a fire field (or application of computational fluid dynamics (CFD) model. The paths of smoke particles are modeled by the Lagrangian method coupled with the air movement induced by hot smoke. Distribution of smoke particles and their trajectories are then calculated. By superimposing the trajectories of particles of different sizes, the shape of the smoke plume is observed.Department of Building Services Engineerin
A description is given of a model which predicts the motion of combustion products and fresh air cau...
This report evaluates the methods used to predict smoke movement in atriums and the limits of smoke ...
Prediction of smoke flow movements in marine and offshore compartment fires is still a challenging w...
ABSTRACT: Transport of larger smoke particles generated by a fire in a compartment is studied. An at...
In Computational Fluid Dynamics (CFD) based fire simulation, the particle laden smoke is usually ass...
The purpose of this paper is to better understand the behavior of smoke movement in an atrium. Thus ...
AbstractThis work aims at analyzing the dynamics mechanism of airflow and fire spread, especially fo...
The Fire Dynamics Simulator code is used to investigate the smoke movement in an atrium under fire s...
AbstractThis work aims at analyzing the dynamics mechanism of airflow and fire spread, especially fo...
Results from small-scale experiments on smoke movement in an atrium are given, both with and without...
This paper presents a computational and experimental study of fire growth and smoke movement in larg...
The Fire Dynamics Simulator code is used to investigate the smoke filling process in a large buildin...
Smoke movement and ambient airflow in a stairwell under fire scenarios are studied numerically using...
A description is given of a model which predicts the motion of combustion products and fresh air cau...
Abstract: In the present work, the computational fluid dynamics (CFD) technique was used to predict ...
A description is given of a model which predicts the motion of combustion products and fresh air cau...
This report evaluates the methods used to predict smoke movement in atriums and the limits of smoke ...
Prediction of smoke flow movements in marine and offshore compartment fires is still a challenging w...
ABSTRACT: Transport of larger smoke particles generated by a fire in a compartment is studied. An at...
In Computational Fluid Dynamics (CFD) based fire simulation, the particle laden smoke is usually ass...
The purpose of this paper is to better understand the behavior of smoke movement in an atrium. Thus ...
AbstractThis work aims at analyzing the dynamics mechanism of airflow and fire spread, especially fo...
The Fire Dynamics Simulator code is used to investigate the smoke movement in an atrium under fire s...
AbstractThis work aims at analyzing the dynamics mechanism of airflow and fire spread, especially fo...
Results from small-scale experiments on smoke movement in an atrium are given, both with and without...
This paper presents a computational and experimental study of fire growth and smoke movement in larg...
The Fire Dynamics Simulator code is used to investigate the smoke filling process in a large buildin...
Smoke movement and ambient airflow in a stairwell under fire scenarios are studied numerically using...
A description is given of a model which predicts the motion of combustion products and fresh air cau...
Abstract: In the present work, the computational fluid dynamics (CFD) technique was used to predict ...
A description is given of a model which predicts the motion of combustion products and fresh air cau...
This report evaluates the methods used to predict smoke movement in atriums and the limits of smoke ...
Prediction of smoke flow movements in marine and offshore compartment fires is still a challenging w...