A review on architectural and urban design approaches to reducing the urban heat island effect

With the ongoing rapid urbanisation, humans enjoy the comfort of living with the use of advanced technology and infrastructure, without consideration towards the pollution produced daily, such as waste, heat, and exhaust gas emissions. Human-induced climate change has resulted in extreme weather and...

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Main Authors: Yu, Chiu Hung, Ling, Gabriel Hoh Teck, Huang, Chih-Hong, Leng, Pau Chung, Md. Suhud, Nur Amiera, Wai, Shin Ho
Format: Article
Published: Penerbit UKM 2022
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Online Access:http://eprints.utm.my/104237/
http://dx.doi.org/10.17576/geo-2022-1801-07
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spelling my.utm.1042372024-01-27T01:38:17Z http://eprints.utm.my/104237/ A review on architectural and urban design approaches to reducing the urban heat island effect Yu, Chiu Hung Ling, Gabriel Hoh Teck Huang, Chih-Hong Leng, Pau Chung Md. Suhud, Nur Amiera Wai, Shin Ho HT101-395 Sociology, Urban With the ongoing rapid urbanisation, humans enjoy the comfort of living with the use of advanced technology and infrastructure, without consideration towards the pollution produced daily, such as waste, heat, and exhaust gas emissions. Human-induced climate change has resulted in extreme weather and climate events, causing a consequential increase in the urban heat island effect. A large amount of radiant heat is focused in the city area, threatening the threshold of comfort in urban living, affecting our future generations to come. Therefore, this paper discusses how this phenomenon could be mitigated through a few design approaches. The existence of green roofs helps reduce the direct absorption of heat in buildings while water bodies help lower the surrounding temperature of a place. Additionally, using high reflectivity and spectral emissivity materials in buildings can also lower heat absorption into a building. Also, the design of urban wind corridors increases airflow into an area, hence cooling the surrounding temperature. When these steps are strategically incorporated into a design, the amount of heat could be significantly reduced, hence extenuating the urban heat island effect. However, more in-depth research is needed to ensure that it could successfully palliate the urban heat island effect in a city. It is hoped that this study could be a comprehensive guide to designers and engineers, or any individuals in the field of architecture and urban design in tackling the problem, hence achieving their target in eliminating the urban heat island effect in future works. Penerbit UKM 2022 Article PeerReviewed Yu, Chiu Hung and Ling, Gabriel Hoh Teck and Huang, Chih-Hong and Leng, Pau Chung and Md. Suhud, Nur Amiera and Wai, Shin Ho (2022) A review on architectural and urban design approaches to reducing the urban heat island effect. Geografia, 18 (1). pp. 87-100. ISSN 2682-7727 http://dx.doi.org/10.17576/geo-2022-1801-07 DOI : 10.17576/geo-2022-1801-07
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 HT101-395 Sociology, Urban
spellingShingle HT101-395 Sociology, Urban
Yu, Chiu Hung
Ling, Gabriel Hoh Teck
Huang, Chih-Hong
Leng, Pau Chung
Md. Suhud, Nur Amiera
Wai, Shin Ho
A review on architectural and urban design approaches to reducing the urban heat island effect
description With the ongoing rapid urbanisation, humans enjoy the comfort of living with the use of advanced technology and infrastructure, without consideration towards the pollution produced daily, such as waste, heat, and exhaust gas emissions. Human-induced climate change has resulted in extreme weather and climate events, causing a consequential increase in the urban heat island effect. A large amount of radiant heat is focused in the city area, threatening the threshold of comfort in urban living, affecting our future generations to come. Therefore, this paper discusses how this phenomenon could be mitigated through a few design approaches. The existence of green roofs helps reduce the direct absorption of heat in buildings while water bodies help lower the surrounding temperature of a place. Additionally, using high reflectivity and spectral emissivity materials in buildings can also lower heat absorption into a building. Also, the design of urban wind corridors increases airflow into an area, hence cooling the surrounding temperature. When these steps are strategically incorporated into a design, the amount of heat could be significantly reduced, hence extenuating the urban heat island effect. However, more in-depth research is needed to ensure that it could successfully palliate the urban heat island effect in a city. It is hoped that this study could be a comprehensive guide to designers and engineers, or any individuals in the field of architecture and urban design in tackling the problem, hence achieving their target in eliminating the urban heat island effect in future works.
format Article
author Yu, Chiu Hung
Ling, Gabriel Hoh Teck
Huang, Chih-Hong
Leng, Pau Chung
Md. Suhud, Nur Amiera
Wai, Shin Ho
author_facet Yu, Chiu Hung
Ling, Gabriel Hoh Teck
Huang, Chih-Hong
Leng, Pau Chung
Md. Suhud, Nur Amiera
Wai, Shin Ho
author_sort Yu, Chiu Hung
title A review on architectural and urban design approaches to reducing the urban heat island effect
title_short A review on architectural and urban design approaches to reducing the urban heat island effect
title_full A review on architectural and urban design approaches to reducing the urban heat island effect
title_fullStr A review on architectural and urban design approaches to reducing the urban heat island effect
title_full_unstemmed A review on architectural and urban design approaches to reducing the urban heat island effect
title_sort review on architectural and urban design approaches to reducing the urban heat island effect
publisher Penerbit UKM
publishDate 2022
url http://eprints.utm.my/104237/
http://dx.doi.org/10.17576/geo-2022-1801-07
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score 13.18916