This paper reports on an investigation of the adequacy of Computational fluid dynamics (CFD), using a standard Reynolds Averaged Navier Stokes (RANS) model, for predicting dispersion of neutrally buoyant gas in a large indoor space. We used CFD to predict pollutant (dye) concentration profiles in a water filled scale model of an atrium with a continuous pollutant source. Predictions from the RANS formulation are comparable to an ensemble average of independent identical experiments. Model results were compared to pollutant concentration data in a horizontal plane from experiments in a scale model atrium. Predictions were made for steady-state (fully developed) and transient (developing) pollutant concentrations. Agreement between CFD predic...
The manufacturing companies producing chemical products have to deal with a variety of inherent envi...
The large-scale practical application of Large-Eddy Simulation (LES) for predicting long-term wind f...
In Computational Fluid Dynamics (CFD) studies for the prediction of room airflow the Reynolds-averag...
Numerical simulations of room airflow using Computational Fluid Dynamics (CFD) are often based on th...
The flow of air from one room to another may be approximated by network flow models which consider t...
We report on computational fluid dynamics (CFD) predictions of mixing time of a pollutant in an unve...
Ventilation systems are used for create a thermally comfortable environment and good indoor air qual...
Computational Fluid Dynamics (CFD) is increasingly used to predict wind flow and pollutant dispersio...
Outbursts of airborne infectious diseases directly cause death and illness, while air pollution stro...
International audienceA comparative study of models used to predict contaminant dispersion in a part...
The accuracy of Computational Fluid Dynamics (CFD) in the prediction of the pollutant concentration ...
International audienceThis study aimed to numerically investigate the air flow and contaminant dispe...
The prediction of plume dispersion near buildings is very important for the design of exhaust stacks...
Outdoor air quality is one of the major environmental problems today. Micro-scale pollutant dispersi...
The manufacturing companies producing chemical products have to deal with a variety of inherent envi...
The large-scale practical application of Large-Eddy Simulation (LES) for predicting long-term wind f...
In Computational Fluid Dynamics (CFD) studies for the prediction of room airflow the Reynolds-averag...
Numerical simulations of room airflow using Computational Fluid Dynamics (CFD) are often based on th...
The flow of air from one room to another may be approximated by network flow models which consider t...
We report on computational fluid dynamics (CFD) predictions of mixing time of a pollutant in an unve...
Ventilation systems are used for create a thermally comfortable environment and good indoor air qual...
Computational Fluid Dynamics (CFD) is increasingly used to predict wind flow and pollutant dispersio...
Outbursts of airborne infectious diseases directly cause death and illness, while air pollution stro...
International audienceA comparative study of models used to predict contaminant dispersion in a part...
The accuracy of Computational Fluid Dynamics (CFD) in the prediction of the pollutant concentration ...
International audienceThis study aimed to numerically investigate the air flow and contaminant dispe...
The prediction of plume dispersion near buildings is very important for the design of exhaust stacks...
Outdoor air quality is one of the major environmental problems today. Micro-scale pollutant dispersi...
The manufacturing companies producing chemical products have to deal with a variety of inherent envi...
The large-scale practical application of Large-Eddy Simulation (LES) for predicting long-term wind f...
In Computational Fluid Dynamics (CFD) studies for the prediction of room airflow the Reynolds-averag...