Author
Khalaf, Mohammed Abdel Latıf Mustafa, Ashrafian Bonab, Touraj, Demirci, Cem
Publication Date
2019
Publication Place
-
EDP Sciences
Type
Document
Language
English
Digital
Yes
Manuscript
No
Library
Özyeğin University
Library Asset ID
2555-0403
Record ID
d28ef91a-477a-4a52-a4f1-fa1d9ec9147f
Library Location
Architecture
Date
2019
Sample Text
The energy conversations methods and techniques take a significant role in the energy performance of the buildings. Façade and shading systems are in continuous development, and recent studies are showing the importance of implementation of such systems to reduce energy consumption and enhance the effectiveness of the building performance. School buildings are mostly being used during daytime, hence, require active use of sunlight. A measure that is taken on a school building envelope can prevent overheating and overcooling and reduce the heating and cooling energy consumption but at the same time can increase the lighting energy consumption vice versa. Thus, it is necessary to optimise the energy required for climatisation of a building with lighting energy demand. The main aim of the paper is to provide analysis for façade and shading systems applied to a school building and study the effectiveness of it on energy consumption and conservation. The case study for this paper is a typical building project designed to be located in Istanbul, Turkey and has a traditional façade system which is clear double layer windows without any shading devices. The analyses of the energy efficiency of these systems will be presented. The different glazing types and shading systems alternatives will show the most efficient one to be used as some optimised alternatives for the systems. Findings indicate that proper glazing and shading systems can reduce the needed energy for heating and lightening and thus total energy consumption of a school building significantly.
Editör
Kurnitski, J., Wargocki, P., Mazzarela, L., Zhang, H., Nastase, I., Tanabe, S., Gameiro da Silva, M. C., Cao, G., Inard, C.
DOI
10.1051/e3sconf/201911103052
Cilt
111