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A Study on Daylighting Performance of Split Louver with Simplified Parametric Control

Alsukkar, Muna; Hu, Mingke; Gadi, Mohamed; Su, Yuehong

A Study on Daylighting Performance of Split Louver with Simplified Parametric Control Thumbnail


Authors

Muna Alsukkar

Mingke Hu

YUEHONG SU YUEHONG.SU@NOTTINGHAM.AC.UK
Professor of Thermal Science and Building Technology



Abstract

A split louver consists of two sections with their slat angles to be adjusted separately for glare protection and redirection of sunlight, respectively. The upper section works in conjunction with the lower section to enhance daylight availability and uniformity throughout the year. The study aims to improve the daylighting performance of the split louver by applying a simplified parametric control, which predetermines the angle difference between adjacent slats in the upper section for a chosen solar altitude and then keeps this difference fixed during operation. The slats in the upper section can be changed parametrically using the Grasshopper to reflect daylight onto the ceiling and then illuminate the rear zone of a space. The lower section of the split louver can control the daylight in the front space area and may affect the amount of light in the back. The performance indicator in evaluating the proposed split louver design for the chosen typical days is the percentage coverage of the work plane area for the illuminance range of 150~750 lux, which was achieved up to 100% in some cases. The proposed split louver with the simplified parametric control has the potential to provide relatively consistent and distributed daylight coverage of the floor area and a glare-free environment.

Citation

Alsukkar, M., Hu, M., Gadi, M., & Su, Y. (2022). A Study on Daylighting Performance of Split Louver with Simplified Parametric Control. Buildings, 12(5), Article 594. https://doi.org/10.3390/buildings12050594

Journal Article Type Article
Acceptance Date Apr 29, 2022
Online Publication Date May 4, 2022
Publication Date May 4, 2022
Deposit Date May 8, 2022
Publicly Available Date May 9, 2022
Journal Buildings
Electronic ISSN 2075-5309
Publisher MDPI AG
Peer Reviewed Peer Reviewed
Volume 12
Issue 5
Article Number 594
DOI https://doi.org/10.3390/buildings12050594
Keywords Building and Construction; Civil and Structural Engineering; Architecture
Public URL https://nottingham-repository.worktribe.com/output/7957217
Publisher URL https://www.mdpi.com/2075-5309/12/5/594

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