Simulation methodology for high-rise office buildings with double-skin façade in the hot and humid climate
Jermyn Wong, Deo Prasad, Masud Behnia
Abstract
Jermyn Wong, Deo Prasad, Masud Behnia
Abstract
A number of recent investigations and findings are reported in the literature pertaining to the used of doubleskin façade for passive ventilation in buildings and the researches have revealed close link between natural ventilation design and the design of double-skin façade. It was found that significant energy saving is possible if natural ventilation strategy could be exploited with the use of double-skin façade. In this research, CFD was used to analyse the correlation between thermal comfort parameters and different double-skin façade orientations to be used in high-rise office buildings in hot and humid climate. A comprehensive methodology is proposed and results were presented.
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
A number of recent investigations and findings are reported in the literature pertaining to the used of doubleskin façade for passive ventilation in buildings and the researches have revealed close link between natural ventilation design and the design of double-skin façade. It was found that significant energy saving is possible if natural ventilation strategy could be exploited with the use of double-skin façade. In this research, CFD was used to analyse the correlation between thermal comfort parameters and different double-skin façade orientations to be used in high-rise office buildings in hot and humid climate. A comprehensive methodology is proposed and results were presented.
Key concepts: Facade, Natural ventilation, Architectural engineering, High rise, Ventilation (architecture), Thermal comfort, Environmental science, Engineering