Assessment of temperature and humidity of urban building using high-spatial resolution image world view 3 / Muhammad Daniel Haziq Mohamad Rosdi

The urban area, which consist a variety of building material has an immediate effect on the microclimate and on human comfort, which in turn has an effect on the global climate and heat island phenomenon. The extensive use of concrete and other several types of building material such as wooden and s...

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Main Author: Mohamad Rosdi, Muhammad Daniel Haziq
Format: Thesis
Language:English
Published: 2022
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Online Access:https://ir.uitm.edu.my/id/eprint/68492/1/68492.pdf
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spelling my-uitm-ir.684922024-04-12T03:00:19Z Assessment of temperature and humidity of urban building using high-spatial resolution image world view 3 / Muhammad Daniel Haziq Mohamad Rosdi 2022 Mohamad Rosdi, Muhammad Daniel Haziq Aerial geography Geographic information systems The urban area, which consist a variety of building material has an immediate effect on the microclimate and on human comfort, which in turn has an effect on the global climate and heat island phenomenon. The extensive use of concrete and other several types of building material such as wooden and steel in urban area contributes to the heat island phenomenon, which indeed has a negative impact on thermal comfort. Besides, the global climate change is being amplified by an increase in humidity and temperature in urban area. Therefore, this research aims to assess the relationship between temperature and humidity of urban building materials with environmental in Sri Petaling, Selangor using high-spatial resolution image, Worldview 3. The discrimination of urban building among landuse lancover (LULC) utilized Support Vector Machine (SVM) classifier via object-based image analysis (OBIA) method. There are three (3) objectives have been determined; i) to classify the building materials, and. ii) to identify the temperature and humidity of different building materials, and. iii) to assess the relationship between temperature and humidity of urban building materials with surrounding environment. The expected outcome of this study is a map of different urban building materials and the impact of surrounding environment towards temperature and humidity of building materials. Consequently, this study will assist in reducing the effect of urban heat island (UHI) and benefited to Ministry of Health and municipal council in urban planning management especially in evaluating the climate effects of building materials towards surrounding environment. 2022 Thesis https://ir.uitm.edu.my/id/eprint/68492/ https://ir.uitm.edu.my/id/eprint/68492/1/68492.pdf text en public degree Universiti Teknologi Mara Perlis Faculty of Architecture, Planning and Surveying
institution Universiti Teknologi MARA
collection UiTM Institutional Repository
language English
topic Aerial geography
Geographic information systems
spellingShingle Aerial geography
Geographic information systems
Mohamad Rosdi, Muhammad Daniel Haziq
Assessment of temperature and humidity of urban building using high-spatial resolution image world view 3 / Muhammad Daniel Haziq Mohamad Rosdi
description The urban area, which consist a variety of building material has an immediate effect on the microclimate and on human comfort, which in turn has an effect on the global climate and heat island phenomenon. The extensive use of concrete and other several types of building material such as wooden and steel in urban area contributes to the heat island phenomenon, which indeed has a negative impact on thermal comfort. Besides, the global climate change is being amplified by an increase in humidity and temperature in urban area. Therefore, this research aims to assess the relationship between temperature and humidity of urban building materials with environmental in Sri Petaling, Selangor using high-spatial resolution image, Worldview 3. The discrimination of urban building among landuse lancover (LULC) utilized Support Vector Machine (SVM) classifier via object-based image analysis (OBIA) method. There are three (3) objectives have been determined; i) to classify the building materials, and. ii) to identify the temperature and humidity of different building materials, and. iii) to assess the relationship between temperature and humidity of urban building materials with surrounding environment. The expected outcome of this study is a map of different urban building materials and the impact of surrounding environment towards temperature and humidity of building materials. Consequently, this study will assist in reducing the effect of urban heat island (UHI) and benefited to Ministry of Health and municipal council in urban planning management especially in evaluating the climate effects of building materials towards surrounding environment.
format Thesis
qualification_level Bachelor degree
author Mohamad Rosdi, Muhammad Daniel Haziq
author_facet Mohamad Rosdi, Muhammad Daniel Haziq
author_sort Mohamad Rosdi, Muhammad Daniel Haziq
title Assessment of temperature and humidity of urban building using high-spatial resolution image world view 3 / Muhammad Daniel Haziq Mohamad Rosdi
title_short Assessment of temperature and humidity of urban building using high-spatial resolution image world view 3 / Muhammad Daniel Haziq Mohamad Rosdi
title_full Assessment of temperature and humidity of urban building using high-spatial resolution image world view 3 / Muhammad Daniel Haziq Mohamad Rosdi
title_fullStr Assessment of temperature and humidity of urban building using high-spatial resolution image world view 3 / Muhammad Daniel Haziq Mohamad Rosdi
title_full_unstemmed Assessment of temperature and humidity of urban building using high-spatial resolution image world view 3 / Muhammad Daniel Haziq Mohamad Rosdi
title_sort assessment of temperature and humidity of urban building using high-spatial resolution image world view 3 / muhammad daniel haziq mohamad rosdi
granting_institution Universiti Teknologi Mara Perlis
granting_department Faculty of Architecture, Planning and Surveying
publishDate 2022
url https://ir.uitm.edu.my/id/eprint/68492/1/68492.pdf
_version_ 1804889667900801024