A field study of thermal and visual performance of self-shading energy commission diamond building, Putrajaya, Malaysia

This study investigates daylighting condition and cooling effects of a self-shading Energy Commission Diamond building in Putrajaya, Malaysia, using field measurements. Methods/Statistical Analysis: The field data were collected using a HD35ED series data logger measuring instrument with a HD35AP ba...

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Main Authors: Dodo, Yakubu Aminu, Pontip, Stephen Nimlyat, Muhammed, Gambo Abdullahi, Kandar, Mohd.Zin
Format: Article
Published: Indian Society for Education and Environment 2016
Subjects:
Online Access:http://eprints.utm.my/id/eprint/66904/
http://dx.doi.org/10.17485/ijst/2016/v9i46/107120
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Institution: Universiti Teknologi Malaysia
id my.utm.66904
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spelling my.utm.669042017-11-20T08:52:04Z http://eprints.utm.my/id/eprint/66904/ A field study of thermal and visual performance of self-shading energy commission diamond building, Putrajaya, Malaysia Dodo, Yakubu Aminu Pontip, Stephen Nimlyat Muhammed, Gambo Abdullahi Kandar, Mohd.Zin TH Building construction This study investigates daylighting condition and cooling effects of a self-shading Energy Commission Diamond building in Putrajaya, Malaysia, using field measurements. Methods/Statistical Analysis: The field data were collected using a HD35ED series data logger measuring instrument with a HD35AP base unit. Findings: The results from the field measurement indicate that illuminance in the building resulting from daylighting alone are above 200 Lux. The average daylight factor is 2.7% which is within the acceptable range of indoor illuminance. From the calculations of OTTV, it is clearly shown that there is reductions of heat transfer into the Diamond building due to it incline wall facade that provide self-shading on the building. The average amount of sensible heat energy within the building is 45.8 KJ/Kg, with the west wing and the south wing indoor office spaces having a difference of about 1.5 KJ/Kg in their enthalpy. On an average, there is a total reduction of 30.6 KJ per unit volume of heat gain into the Diamond building based on the enthalpy change. Considering occupants comfort and well being in the building, the daylighting requirements and heat gain in the building are acceptable. Applications/Improvement: This result is an indication that self-shading in buildings provides efficient daylighting and cooling which in turn reduces the building energy consumption. Indian Society for Education and Environment 2016-01-12 Article PeerReviewed Dodo, Yakubu Aminu and Pontip, Stephen Nimlyat and Muhammed, Gambo Abdullahi and Kandar, Mohd.Zin (2016) A field study of thermal and visual performance of self-shading energy commission diamond building, Putrajaya, Malaysia. Indian Journal of Science and Technology, 9 (46). ISSN 0974-6846 http://dx.doi.org/10.17485/ijst/2016/v9i46/107120 DOI :10.17485/ijst/2016/v9i46/107120
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
Dodo, Yakubu Aminu
Pontip, Stephen Nimlyat
Muhammed, Gambo Abdullahi
Kandar, Mohd.Zin
A field study of thermal and visual performance of self-shading energy commission diamond building, Putrajaya, Malaysia
description This study investigates daylighting condition and cooling effects of a self-shading Energy Commission Diamond building in Putrajaya, Malaysia, using field measurements. Methods/Statistical Analysis: The field data were collected using a HD35ED series data logger measuring instrument with a HD35AP base unit. Findings: The results from the field measurement indicate that illuminance in the building resulting from daylighting alone are above 200 Lux. The average daylight factor is 2.7% which is within the acceptable range of indoor illuminance. From the calculations of OTTV, it is clearly shown that there is reductions of heat transfer into the Diamond building due to it incline wall facade that provide self-shading on the building. The average amount of sensible heat energy within the building is 45.8 KJ/Kg, with the west wing and the south wing indoor office spaces having a difference of about 1.5 KJ/Kg in their enthalpy. On an average, there is a total reduction of 30.6 KJ per unit volume of heat gain into the Diamond building based on the enthalpy change. Considering occupants comfort and well being in the building, the daylighting requirements and heat gain in the building are acceptable. Applications/Improvement: This result is an indication that self-shading in buildings provides efficient daylighting and cooling which in turn reduces the building energy consumption.
format Article
author Dodo, Yakubu Aminu
Pontip, Stephen Nimlyat
Muhammed, Gambo Abdullahi
Kandar, Mohd.Zin
author_facet Dodo, Yakubu Aminu
Pontip, Stephen Nimlyat
Muhammed, Gambo Abdullahi
Kandar, Mohd.Zin
author_sort Dodo, Yakubu Aminu
title A field study of thermal and visual performance of self-shading energy commission diamond building, Putrajaya, Malaysia
title_short A field study of thermal and visual performance of self-shading energy commission diamond building, Putrajaya, Malaysia
title_full A field study of thermal and visual performance of self-shading energy commission diamond building, Putrajaya, Malaysia
title_fullStr A field study of thermal and visual performance of self-shading energy commission diamond building, Putrajaya, Malaysia
title_full_unstemmed A field study of thermal and visual performance of self-shading energy commission diamond building, Putrajaya, Malaysia
title_sort field study of thermal and visual performance of self-shading energy commission diamond building, putrajaya, malaysia
publisher Indian Society for Education and Environment
publishDate 2016
url http://eprints.utm.my/id/eprint/66904/
http://dx.doi.org/10.17485/ijst/2016/v9i46/107120
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