Evaluating the Daylighting Potential in the Monetary Times Building
Abdul W. Syed
Abstract
Abdul W. Syed
Abstract
Daylighting design is not just to install large windows and provide maximum daylighting. As a result, uncontrolled daylighting creates over brightness and glare near perimeter zones, increases cooling load in cooling season, increases energy consumption and outweighs the benefits of daylighting. The purpose of daylighting design strategies is to provide controlled daylight with uniform and adequate levels of illuminance in the space. In this paper, problems with daylighting in the Monetary Times Building at Ryerson University have been studied and daylighting design strategies have been evaluated. The study results showed that the employed daylighting design strategies in the MON building could be saved up to 135038.4 KWh/year or 61.76 KWh/m
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.
Daylighting design is not just to install large windows and provide maximum daylighting. As a result, uncontrolled daylighting creates over brightness and glare near perimeter zones, increases cooling load in cooling season, increases energy consumption and outweighs the benefits of daylighting. The purpose of daylighting design strategies is to provide controlled daylight with uniform and adequate levels of illuminance in the space. In this paper, problems with daylighting in the Monetary Times Building at Ryerson University have been studied and daylighting design strategies have been evaluated. The study results showed that the employed daylighting design strategies in the MON building could be saved up to 135038.4 KWh/year or 61.76 KWh/m
Key concepts: Daylighting, Daylight, Architectural engineering, Illuminance, Electric light, Environmental science, GLARE, Energy consumption