Possibility to use solar induced ventilation strategies in tropical conditions by computational fluid dynamic simulation

The climatic conditions of the tropical regions are characterized by high air temperatures, high relative humidity's and very low wind speeds, which make the environmental conditions uncomfortable. The use of solar roof chimneys in buildings is one way to increase natural ventilation and, as a...

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Main Authors: Nugroho, Agung Murti, Ahmad, Mohd. Hamdan
Format: Conference or Workshop Item
Language:English
Published: 2005
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Online Access:http://eprints.utm.my/id/eprint/2315/1/17-Appendix_B.pdf
http://eprints.utm.my/id/eprint/2315/
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spelling my.utm.23152017-09-06T04:50:10Z http://eprints.utm.my/id/eprint/2315/ Possibility to use solar induced ventilation strategies in tropical conditions by computational fluid dynamic simulation Nugroho, Agung Murti Ahmad, Mohd. Hamdan NA Architecture The climatic conditions of the tropical regions are characterized by high air temperatures, high relative humidity's and very low wind speeds, which make the environmental conditions uncomfortable. The use of solar roof chimneys in buildings is one way to increase natural ventilation and, as a consequence, improve indoor air quality. The present study evaluates the stack induced ventilation strategies performance on experimental room model in Malaysian condition. The use of solar induced ventilation strategies in building was investigated using CFD FloVent technique. Validation of CFD Flovent was done by comparing the pilot testing. The effect of solar chimney, solar wall, and solar roof were simulated in order to determine the best option for a tropical ventilation strategy. The simulations were performed on selected model of trombe wall, solar chimney, and solar roof. The results showed the solar chimney can increase air velocity in the room but also increase heat gain in the room. The results also indicated that solar roof reduced the heat gain but resulted in low air velocity. Use of solar wall can increase air velocity in the room depending on the orientation of the solar wall. Based on the above finding a combined strategy was developed to increase stack induced ventilation. 2005 Conference or Workshop Item PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/2315/1/17-Appendix_B.pdf Nugroho, Agung Murti and Ahmad, Mohd. Hamdan (2005) Possibility to use solar induced ventilation strategies in tropical conditions by computational fluid dynamic simulation. In: 6th Sustainable Environmental Architecture, September, 2005, Institut Teknologi Bandung, Bandung, Indonesia.
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/
language English
topic NA Architecture
spellingShingle NA Architecture
Nugroho, Agung Murti
Ahmad, Mohd. Hamdan
Possibility to use solar induced ventilation strategies in tropical conditions by computational fluid dynamic simulation
description The climatic conditions of the tropical regions are characterized by high air temperatures, high relative humidity's and very low wind speeds, which make the environmental conditions uncomfortable. The use of solar roof chimneys in buildings is one way to increase natural ventilation and, as a consequence, improve indoor air quality. The present study evaluates the stack induced ventilation strategies performance on experimental room model in Malaysian condition. The use of solar induced ventilation strategies in building was investigated using CFD FloVent technique. Validation of CFD Flovent was done by comparing the pilot testing. The effect of solar chimney, solar wall, and solar roof were simulated in order to determine the best option for a tropical ventilation strategy. The simulations were performed on selected model of trombe wall, solar chimney, and solar roof. The results showed the solar chimney can increase air velocity in the room but also increase heat gain in the room. The results also indicated that solar roof reduced the heat gain but resulted in low air velocity. Use of solar wall can increase air velocity in the room depending on the orientation of the solar wall. Based on the above finding a combined strategy was developed to increase stack induced ventilation.
format Conference or Workshop Item
author Nugroho, Agung Murti
Ahmad, Mohd. Hamdan
author_facet Nugroho, Agung Murti
Ahmad, Mohd. Hamdan
author_sort Nugroho, Agung Murti
title Possibility to use solar induced ventilation strategies in tropical conditions by computational fluid dynamic simulation
title_short Possibility to use solar induced ventilation strategies in tropical conditions by computational fluid dynamic simulation
title_full Possibility to use solar induced ventilation strategies in tropical conditions by computational fluid dynamic simulation
title_fullStr Possibility to use solar induced ventilation strategies in tropical conditions by computational fluid dynamic simulation
title_full_unstemmed Possibility to use solar induced ventilation strategies in tropical conditions by computational fluid dynamic simulation
title_sort possibility to use solar induced ventilation strategies in tropical conditions by computational fluid dynamic simulation
publishDate 2005
url http://eprints.utm.my/id/eprint/2315/1/17-Appendix_B.pdf
http://eprints.utm.my/id/eprint/2315/
_version_ 1643643558060621824
score 13.214268