Optimum window position in the building façade for high day-light performance: Empirical study in hot and dry climate

Author:

Rais Messaouda1,Elhadad Sara2,Boumerzoug Adel3,Baranyai Bálint4

Affiliation:

1. 1Marcel Breuer Doctoral School, Department of Building Structures and Energy Design, Institute of Architecture, Faculty of Engineering and Information Technology, University of Pécs, Boszorkány u. 2, H-7624 Pécs, Hungary

2. 2Marcel Breuer Doctoral School, Department of Building Structures and Energy Design, Institute of Architecture, Faculty of Engineering and Information Technology, University of Pécs, Boszorkány u. 2, H-7624 Pécs, Hungary and Department of Architecture, Faculty of Engineering, Minia University, 6111 Minia, Egypt

3. 3Institute of Architecture, University Mohamed Khider Biskra, BP 145 RP, 07000, Biskra, Algeria

4. 4Department of Building Structures and Energy Design, Institute of Architecture, Faculty of Engineering and Information Technology, Boszorkány u. 2 and János Szentágothai Research Center, Ifjúság u. 20, University of Pécs, H-7624 Pécs, Hungary

Abstract

Abstract:Day-lighting studies in buildings play a major role in indoor environmental investigation and can be conducted at the early stages of building design. Window position significantly affects day-lighting performance. This paper assessed the impacts of the window position on the visual comfort through two main factors; daylight factor and light uniformity in the hot and dry climate zone. In this study different window positions have been examined to achieve optimal visual comfort, using a dynamic simulation through Vi-suit plugin for Blender 3D software that controls the external application Radiance software. The results revealed that the window position at sill start from 1.4 m of a room characterized by (4.30 m × 3.00 m × 3.00 m) is the best compromising solution that complies with the daylight factor and light uniformity standards in the indoor environment. The findings of this study provide a more detailed and comprehensive analysis of the window design for architects/designers in the early building design stages in the hot and dry climate region.

Publisher

Akademiai Kiado Zrt.

Subject

Computer Science Applications,General Materials Science,Modelling and Simulation,Civil and Structural Engineering,Software

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