Study the thermal property effect on window energy savings

Global warming is a vicious cycle. The rise in global temperature increases the cooling demand for thermal comfort, which in turn leads to more greenhouse gas emissions. Windows are known to be the most energy inefficient component of a building fenestration system. To reduce energy demand for heati...

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Main Author: Sia, Ming Aik
Other Authors: Long Yi
Format: Final Year Project
Language:English
Published: Nanyang Technological University 2022
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Online Access:https://hdl.handle.net/10356/157054
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Institution: Nanyang Technological University
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spelling sg-ntu-dr.10356-1570542022-05-08T11:50:40Z Study the thermal property effect on window energy savings Sia, Ming Aik Long Yi School of Materials Science and Engineering LongYi@ntu.edu.sg Engineering::Materials Global warming is a vicious cycle. The rise in global temperature increases the cooling demand for thermal comfort, which in turn leads to more greenhouse gas emissions. Windows are known to be the most energy inefficient component of a building fenestration system. To reduce energy demand for heating and cooling systems, passive systems such as thermochromic windows is used to modulate light without any external energy input. In this thesis, we compare the energy consumption between thermochromic window and the standard single-glazed window in three cities with different climate zones. We simulated the annual energy consumption of a typical 4-room flat model with window-to-wall ratio of 30% in three cities (Singapore, Clermont Ferrand and Moscow) using EnergyPlus™ software. Differences in annual energy consumption, monthly heating and cooling consumption between single-glazed window and thermochromic window were subsequently analysed. Thermochromic window outperforms single-glazed window by reducing energy consumption in all three cities. The highest energy-saving efficiency is achieved in Singapore (13.7%), followed by Clermont Ferrand (6.7%) and Moscow (5.4%). Thermochromic window is superior to single-glazed window in energy efficiency. It is recommended that the governments should push for adoption of the thermochromic window system to reduce carbon footprint attributed to space cooling. Future research can be done by including coatings on thermochromic window for an accurate modelling of thermochromic windows. Bachelor of Engineering (Materials Engineering) 2022-05-08T11:50:39Z 2022-05-08T11:50:39Z 2022 Final Year Project (FYP) Sia, M. A. (2022). Study the thermal property effect on window energy savings. Final Year Project (FYP), Nanyang Technological University, Singapore. https://hdl.handle.net/10356/157054 https://hdl.handle.net/10356/157054 en application/pdf Nanyang Technological University
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering::Materials
spellingShingle Engineering::Materials
Sia, Ming Aik
Study the thermal property effect on window energy savings
description Global warming is a vicious cycle. The rise in global temperature increases the cooling demand for thermal comfort, which in turn leads to more greenhouse gas emissions. Windows are known to be the most energy inefficient component of a building fenestration system. To reduce energy demand for heating and cooling systems, passive systems such as thermochromic windows is used to modulate light without any external energy input. In this thesis, we compare the energy consumption between thermochromic window and the standard single-glazed window in three cities with different climate zones. We simulated the annual energy consumption of a typical 4-room flat model with window-to-wall ratio of 30% in three cities (Singapore, Clermont Ferrand and Moscow) using EnergyPlus™ software. Differences in annual energy consumption, monthly heating and cooling consumption between single-glazed window and thermochromic window were subsequently analysed. Thermochromic window outperforms single-glazed window by reducing energy consumption in all three cities. The highest energy-saving efficiency is achieved in Singapore (13.7%), followed by Clermont Ferrand (6.7%) and Moscow (5.4%). Thermochromic window is superior to single-glazed window in energy efficiency. It is recommended that the governments should push for adoption of the thermochromic window system to reduce carbon footprint attributed to space cooling. Future research can be done by including coatings on thermochromic window for an accurate modelling of thermochromic windows.
author2 Long Yi
author_facet Long Yi
Sia, Ming Aik
format Final Year Project
author Sia, Ming Aik
author_sort Sia, Ming Aik
title Study the thermal property effect on window energy savings
title_short Study the thermal property effect on window energy savings
title_full Study the thermal property effect on window energy savings
title_fullStr Study the thermal property effect on window energy savings
title_full_unstemmed Study the thermal property effect on window energy savings
title_sort study the thermal property effect on window energy savings
publisher Nanyang Technological University
publishDate 2022
url https://hdl.handle.net/10356/157054
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