The suitability of night ventilation to reduce the cooling demand in buildings can be evaluated by coupling Airflow Network Models to Building Energy Simulation tools. To estimate wind-induced ventilation, pressure coefficients (Cp) on the building envelope are key inputs, as well as local wind speed and direction. Cp data obtained by primary sources such as measurements or CFD simulations are considered the most reliable but can be difficult to obtain. An easy alternative are Cp secondary sources, such as databases providing literature data correlations. Therefore an issue arises regarding the choice of the source of pressure coefficients. This paper investigates the effects of Cp from primary and secondary sources on the predicted energy ...
The effectiveness of natural night-ventilation in the urban environment depends on local climate cha...
The effectiveness of natural night-ventilation in the urban environment depends on local climate cha...
The effectiveness of natural night-ventilation in the urban environment depends on local climate cha...
The suitability of night ventilation to reduce the cooling demand in buildings can be evaluated by c...
The suitability of night ventilation to reduce the cooling demand in buildings can be evaluated by c...
The suitability of night ventilation to reduce the cooling demand in buildings can be evaluated by c...
The suitability of night ventilation to reduce the cooling demand in buildings can be evaluated by c...
The suitability of night ventilation to reduce the cooling demand in buildings can be evaluated by c...
The suitability of night ventilation to reduce the cooling demand in buildings can be evaluated by c...
The suitability of night ventilation to reduce the cooling demand in buildings can be e...
The suitability of night ventilation to reduce the cooling demand in buildings can be e...
The suitability of night ventilation to reduce the cooling demand in buildings can be e...
The suitability of night ventilation to reduce the cooling demand in buildings can be e...
Since the Energy Performance for Buildings Directive (EPBD) was accepted and implemented over the co...
Since the Energy Performance for Buildings Directive (EPBD) was accepted and implemented over the co...
The effectiveness of natural night-ventilation in the urban environment depends on local climate cha...
The effectiveness of natural night-ventilation in the urban environment depends on local climate cha...
The effectiveness of natural night-ventilation in the urban environment depends on local climate cha...
The suitability of night ventilation to reduce the cooling demand in buildings can be evaluated by c...
The suitability of night ventilation to reduce the cooling demand in buildings can be evaluated by c...
The suitability of night ventilation to reduce the cooling demand in buildings can be evaluated by c...
The suitability of night ventilation to reduce the cooling demand in buildings can be evaluated by c...
The suitability of night ventilation to reduce the cooling demand in buildings can be evaluated by c...
The suitability of night ventilation to reduce the cooling demand in buildings can be evaluated by c...
The suitability of night ventilation to reduce the cooling demand in buildings can be e...
The suitability of night ventilation to reduce the cooling demand in buildings can be e...
The suitability of night ventilation to reduce the cooling demand in buildings can be e...
The suitability of night ventilation to reduce the cooling demand in buildings can be e...
Since the Energy Performance for Buildings Directive (EPBD) was accepted and implemented over the co...
Since the Energy Performance for Buildings Directive (EPBD) was accepted and implemented over the co...
The effectiveness of natural night-ventilation in the urban environment depends on local climate cha...
The effectiveness of natural night-ventilation in the urban environment depends on local climate cha...
The effectiveness of natural night-ventilation in the urban environment depends on local climate cha...