The development of photoelectrochromic glazing panel in building element / Nurul Zahidah Zol and Wan Nur Syazwani Wan Mohammad

Human activity has increased sea levels and air temperatures, disrupted weather patterns, and made the oceans more acidic by releasing carbon dioxide and other greenhouse gases (GHGs) into the atmosphere. Buildings are important and account for 30% to 40% of the global primary energy consumption. Th...

Full description

Saved in:
Bibliographic Details
Main Authors: Zol, Nurul Zahidah, Wan Mohammad, Wan Nur Syazwani
Format: Conference or Workshop Item
Language:English
Published: 2023
Subjects:
Online Access:https://ir.uitm.edu.my/id/eprint/99967/1/99967.pdf
https://ir.uitm.edu.my/id/eprint/99967/
Tags: Add Tag
No Tags, Be the first to tag this record!
id my.uitm.ir.99967
record_format eprints
spelling my.uitm.ir.999672024-09-29T06:59:50Z https://ir.uitm.edu.my/id/eprint/99967/ The development of photoelectrochromic glazing panel in building element / Nurul Zahidah Zol and Wan Nur Syazwani Wan Mohammad Zol, Nurul Zahidah Wan Mohammad, Wan Nur Syazwani Illumination. Lighting Human activity has increased sea levels and air temperatures, disrupted weather patterns, and made the oceans more acidic by releasing carbon dioxide and other greenhouse gases (GHGs) into the atmosphere. Buildings are important and account for 30% to 40% of the global primary energy consumption. The use of transparent glazing or roller blinds is a hindrance because it can cause discomfort towards the building users. Although this is the case, poorly performing glazed buildings harm and increases the solar heat and daylight penetration, particularly for large office building facades. Therefore, the objective of the research is to propose a PEC Glazing Panel that allows the amount of daylight to be minimized into buildings in Malaysia. Extensive literature reviews conducted via various databases (i.e., Web of Science, Science Direct, and Scopus) were explored. Later, the simulation model using SketchUp 2023 was used to visualize the concepts and ideas of the PEC Glazing Panel. The findings reveal that the proposed PEC Glazing Panel has the potential to be marketed (i.e., locally or internationally) due to its great benefits (i.e., minimal daylight penetration, and glare into the building). Thus, it is hoped that the proposed PEC Glazing Panel would improve the performance of existing glazing and provide comfort, health, and well-being to the building users. 2023-10 Conference or Workshop Item PeerReviewed text en https://ir.uitm.edu.my/id/eprint/99967/1/99967.pdf The development of photoelectrochromic glazing panel in building element / Nurul Zahidah Zol and Wan Nur Syazwani Wan Mohammad. (2023) In: UNSPECIFIED.
institution Universiti Teknologi Mara
building Tun Abdul Razak Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Mara
content_source UiTM Institutional Repository
url_provider http://ir.uitm.edu.my/
language English
topic Illumination. Lighting
spellingShingle Illumination. Lighting
Zol, Nurul Zahidah
Wan Mohammad, Wan Nur Syazwani
The development of photoelectrochromic glazing panel in building element / Nurul Zahidah Zol and Wan Nur Syazwani Wan Mohammad
description Human activity has increased sea levels and air temperatures, disrupted weather patterns, and made the oceans more acidic by releasing carbon dioxide and other greenhouse gases (GHGs) into the atmosphere. Buildings are important and account for 30% to 40% of the global primary energy consumption. The use of transparent glazing or roller blinds is a hindrance because it can cause discomfort towards the building users. Although this is the case, poorly performing glazed buildings harm and increases the solar heat and daylight penetration, particularly for large office building facades. Therefore, the objective of the research is to propose a PEC Glazing Panel that allows the amount of daylight to be minimized into buildings in Malaysia. Extensive literature reviews conducted via various databases (i.e., Web of Science, Science Direct, and Scopus) were explored. Later, the simulation model using SketchUp 2023 was used to visualize the concepts and ideas of the PEC Glazing Panel. The findings reveal that the proposed PEC Glazing Panel has the potential to be marketed (i.e., locally or internationally) due to its great benefits (i.e., minimal daylight penetration, and glare into the building). Thus, it is hoped that the proposed PEC Glazing Panel would improve the performance of existing glazing and provide comfort, health, and well-being to the building users.
format Conference or Workshop Item
author Zol, Nurul Zahidah
Wan Mohammad, Wan Nur Syazwani
author_facet Zol, Nurul Zahidah
Wan Mohammad, Wan Nur Syazwani
author_sort Zol, Nurul Zahidah
title The development of photoelectrochromic glazing panel in building element / Nurul Zahidah Zol and Wan Nur Syazwani Wan Mohammad
title_short The development of photoelectrochromic glazing panel in building element / Nurul Zahidah Zol and Wan Nur Syazwani Wan Mohammad
title_full The development of photoelectrochromic glazing panel in building element / Nurul Zahidah Zol and Wan Nur Syazwani Wan Mohammad
title_fullStr The development of photoelectrochromic glazing panel in building element / Nurul Zahidah Zol and Wan Nur Syazwani Wan Mohammad
title_full_unstemmed The development of photoelectrochromic glazing panel in building element / Nurul Zahidah Zol and Wan Nur Syazwani Wan Mohammad
title_sort development of photoelectrochromic glazing panel in building element / nurul zahidah zol and wan nur syazwani wan mohammad
publishDate 2023
url https://ir.uitm.edu.my/id/eprint/99967/1/99967.pdf
https://ir.uitm.edu.my/id/eprint/99967/
_version_ 1811598133567684608
score 13.201949