An experimental and numerical analysis of the flow conditions in a venturi-shaped roof has been conducted, focusing on the negative pressure in the narrowest roof section (contraction). Natural ventilation of the building zones can be driven by this negative pressure, either completely or partly. The wind tunnel experiments are performed in an atmospheric boundary layer wind tunnel at scale 1:100. The 3D CFD simulations are performed with steady RANS and the RNG k-e model. The aim of this study is to assess the magnitude of the negative pressures generated with different design configurations of the venturi-shaped roof, i.e. the presence and number of guiding vanes. The CFD simulations have been validated using the wind tunnel experiments o...
This paper is experimentally investigated, and developed a numerical model for predicting, wind load...
Wind catchers are structures used for natural ventilation using the two basic principles of stack ef...
Roof shape, roof angle, and internal obstacle are some of the factors that have a substantial impact...
An experimental and numerical analysis of the flow conditions in a venturi-shaped roof has been cond...
Wind tunnel experiments and Computational Fluid Dynamics (CFD) are used to analyse the flow conditio...
Wind tunnel experiments and Computational Fluid Dynamics (CFD) are used to analyse the flow conditio...
Computational Fluid Dynamics (CFD) is used to gain insight in the aerodynamic performance of a ventu...
Wind catchers are structures used for natural ventilation using wind induced into buildings. Recentl...
Wind driven ventilation techniques mainly rely on the design and geometry of the roof and structure...
The wind induced pressures on a roof may reduce the efficiency of a pressurization system. A simple ...
A numerical analysis with Computational Fluid Dynamics (CFD) is performed to investigate the influen...
A venturi-shaped roof for wind-induced natural ventilation of buildings: wind tunnel and CFD evaluat...
A rooftop wind driven turbine ventilator provides effective and environmental friendly natural venti...
This paper is experimentally investigated, and developed a numerical model for predicting, wind load...
Wind catchers are structures used for natural ventilation using the two basic principles of stack ef...
Roof shape, roof angle, and internal obstacle are some of the factors that have a substantial impact...
An experimental and numerical analysis of the flow conditions in a venturi-shaped roof has been cond...
Wind tunnel experiments and Computational Fluid Dynamics (CFD) are used to analyse the flow conditio...
Wind tunnel experiments and Computational Fluid Dynamics (CFD) are used to analyse the flow conditio...
Computational Fluid Dynamics (CFD) is used to gain insight in the aerodynamic performance of a ventu...
Wind catchers are structures used for natural ventilation using wind induced into buildings. Recentl...
Wind driven ventilation techniques mainly rely on the design and geometry of the roof and structure...
The wind induced pressures on a roof may reduce the efficiency of a pressurization system. A simple ...
A numerical analysis with Computational Fluid Dynamics (CFD) is performed to investigate the influen...
A venturi-shaped roof for wind-induced natural ventilation of buildings: wind tunnel and CFD evaluat...
A rooftop wind driven turbine ventilator provides effective and environmental friendly natural venti...
This paper is experimentally investigated, and developed a numerical model for predicting, wind load...
Wind catchers are structures used for natural ventilation using the two basic principles of stack ef...
Roof shape, roof angle, and internal obstacle are some of the factors that have a substantial impact...