Analysis of Anidolic daylighting system parameters in tropical climate

Utilizing available daylight in buildings is a crucial issue for reasons of energy-efficiency as well as improvement of occupant's health and well-being. Anidolic Daylighting System (ADS) is a type of daylighting system that provides daylight in areas far from windows. This device concentrates...

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Main Authors: Roshan, Mohsen, Kandar, Mohd. Zin, Najafpour, Hamed, Ossen, Dilshan Remaz, Ghasemi, Mohsen, Gharakhani, Alireza, Torabi, Mahdi
Format: Article
Published: Zhengzhou University 2014
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Online Access:http://eprints.utm.my/id/eprint/51826/
http://www.lifesciencesite.com/lsj/
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spelling my.utm.518262018-10-21T04:33:33Z http://eprints.utm.my/id/eprint/51826/ Analysis of Anidolic daylighting system parameters in tropical climate Roshan, Mohsen Kandar, Mohd. Zin Najafpour, Hamed Ossen, Dilshan Remaz Ghasemi, Mohsen Gharakhani, Alireza Torabi, Mahdi TH Building construction Utilizing available daylight in buildings is a crucial issue for reasons of energy-efficiency as well as improvement of occupant's health and well-being. Anidolic Daylighting System (ADS) is a type of daylighting system that provides daylight in areas far from windows. This device concentrates daylight in a collector and transfers it to duct situated between collector and distributor, which then spreads this daylight to the inside of the building. The aim of this research is to determine optimum Anidolic duct shape and width which increases daylight illuminance into the interior of office buildings. The simulation model was designed in Integrated Environmental Solution IES<VE> software to perform daylight simulation experiments. Therefore, three configurations of designed duct shape with two duct lengths (12 and 20 meters) were simulated as duct shape variables. Three different duct width sizes were also evaluated. Results indicated that a rectangular shaped Anidolic with three meter duct width offers higher illuminance than the other simulated cases. For future study, other parameters can be carried out such as depth of duct, size of anidolic, collector and distributor of device Zhengzhou University 2014 Article PeerReviewed Roshan, Mohsen and Kandar, Mohd. Zin and Najafpour, Hamed and Ossen, Dilshan Remaz and Ghasemi, Mohsen and Gharakhani, Alireza and Torabi, Mahdi (2014) Analysis of Anidolic daylighting system parameters in tropical climate. Life Science Journal, 11 (8). pp. 171-176. ISSN 1097-8135 http://www.lifesciencesite.com/lsj/
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TH Building construction
spellingShingle TH Building construction
Roshan, Mohsen
Kandar, Mohd. Zin
Najafpour, Hamed
Ossen, Dilshan Remaz
Ghasemi, Mohsen
Gharakhani, Alireza
Torabi, Mahdi
Analysis of Anidolic daylighting system parameters in tropical climate
description Utilizing available daylight in buildings is a crucial issue for reasons of energy-efficiency as well as improvement of occupant's health and well-being. Anidolic Daylighting System (ADS) is a type of daylighting system that provides daylight in areas far from windows. This device concentrates daylight in a collector and transfers it to duct situated between collector and distributor, which then spreads this daylight to the inside of the building. The aim of this research is to determine optimum Anidolic duct shape and width which increases daylight illuminance into the interior of office buildings. The simulation model was designed in Integrated Environmental Solution IES<VE> software to perform daylight simulation experiments. Therefore, three configurations of designed duct shape with two duct lengths (12 and 20 meters) were simulated as duct shape variables. Three different duct width sizes were also evaluated. Results indicated that a rectangular shaped Anidolic with three meter duct width offers higher illuminance than the other simulated cases. For future study, other parameters can be carried out such as depth of duct, size of anidolic, collector and distributor of device
format Article
author Roshan, Mohsen
Kandar, Mohd. Zin
Najafpour, Hamed
Ossen, Dilshan Remaz
Ghasemi, Mohsen
Gharakhani, Alireza
Torabi, Mahdi
author_facet Roshan, Mohsen
Kandar, Mohd. Zin
Najafpour, Hamed
Ossen, Dilshan Remaz
Ghasemi, Mohsen
Gharakhani, Alireza
Torabi, Mahdi
author_sort Roshan, Mohsen
title Analysis of Anidolic daylighting system parameters in tropical climate
title_short Analysis of Anidolic daylighting system parameters in tropical climate
title_full Analysis of Anidolic daylighting system parameters in tropical climate
title_fullStr Analysis of Anidolic daylighting system parameters in tropical climate
title_full_unstemmed Analysis of Anidolic daylighting system parameters in tropical climate
title_sort analysis of anidolic daylighting system parameters in tropical climate
publisher Zhengzhou University
publishDate 2014
url http://eprints.utm.my/id/eprint/51826/
http://www.lifesciencesite.com/lsj/
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score 13.160551