Real-Time Monitoring and Development of a Localized OTTV Equation for Building Energy Performance

Global warming negatively impacts indoor environments, affecting human comfort. Despite global efforts, energy demand and greenhouse gas emissions continue to rise. As sustainable building designs become more critical, enhancing energy efficiency through real-time data analytics is essential. The Ov...

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التفاصيل البيبلوغرافية
الحاوية / القاعدة:CIVIL ENGINEERING JOURNAL-TEHRAN
المؤلفون الرئيسيون: Vighio, Anees A.; Zakaria, Rozana; Ahmad, Faridahanim; Aminuddin, Eeydzah
التنسيق: مقال
اللغة:English
منشور في: C EJ PUBLISHING GROUP 2025
الموضوعات:
الوصول للمادة أونلاين:https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001446174500009
author Vighio
Anees A.; Zakaria
Rozana; Ahmad
Faridahanim; Aminuddin
Eeydzah
spellingShingle Vighio
Anees A.; Zakaria
Rozana; Ahmad
Faridahanim; Aminuddin
Eeydzah
Real-Time Monitoring and Development of a Localized OTTV Equation for Building Energy Performance
Engineering
author_facet Vighio
Anees A.; Zakaria
Rozana; Ahmad
Faridahanim; Aminuddin
Eeydzah
author_sort Vighio
spelling Vighio, Anees A.; Zakaria, Rozana; Ahmad, Faridahanim; Aminuddin, Eeydzah
Real-Time Monitoring and Development of a Localized OTTV Equation for Building Energy Performance
CIVIL ENGINEERING JOURNAL-TEHRAN
English
Article
Global warming negatively impacts indoor environments, affecting human comfort. Despite global efforts, energy demand and greenhouse gas emissions continue to rise. As sustainable building designs become more critical, enhancing energy efficiency through real-time data analytics is essential. The Overall Thermal Transfer Value (OTTV) is a key metric for assessing a building's energy usage, considering factors like orientation, location, and climate. However, limited research has examined real-time data's impact on OTTV coefficients. Therefore, this research aims at developing and validating new OTTV coefficients using real-time data with the EQUEST simulation engine. The coefficients of OTTV (Equivalent Temperature Difference TDeq, Temperature Difference triangle T, and Solar Factor SF) were monitored in real-time using HOBO Temperature Data loggers and Delta Ohm Photometer for Solar Radiations. Focusing on UTM Eco-Home building, the study calculates heat gain components, including transmission through walls, windows, and radiation heat gain. The findings of the study suggest that the modified OTTV equation accurately determines a building's OTTV, enhancing energy efficiency evaluations. The novelty of the study lies in the development of a new OTTV equation for the specific climate of Johor, Malaysia, and the real-time monitoring of OTTV that helps the energy managers analyze the Thermal Transmittance of Building envelopes in real-time.
C EJ PUBLISHING GROUP
2676-6957
2476-3055
2025
11
2
10.28991/CEJ-2025-011-02-09
Engineering
gold
WOS:001446174500009
https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001446174500009
title Real-Time Monitoring and Development of a Localized OTTV Equation for Building Energy Performance
title_short Real-Time Monitoring and Development of a Localized OTTV Equation for Building Energy Performance
title_full Real-Time Monitoring and Development of a Localized OTTV Equation for Building Energy Performance
title_fullStr Real-Time Monitoring and Development of a Localized OTTV Equation for Building Energy Performance
title_full_unstemmed Real-Time Monitoring and Development of a Localized OTTV Equation for Building Energy Performance
title_sort Real-Time Monitoring and Development of a Localized OTTV Equation for Building Energy Performance
container_title CIVIL ENGINEERING JOURNAL-TEHRAN
language English
format Article
description Global warming negatively impacts indoor environments, affecting human comfort. Despite global efforts, energy demand and greenhouse gas emissions continue to rise. As sustainable building designs become more critical, enhancing energy efficiency through real-time data analytics is essential. The Overall Thermal Transfer Value (OTTV) is a key metric for assessing a building's energy usage, considering factors like orientation, location, and climate. However, limited research has examined real-time data's impact on OTTV coefficients. Therefore, this research aims at developing and validating new OTTV coefficients using real-time data with the EQUEST simulation engine. The coefficients of OTTV (Equivalent Temperature Difference TDeq, Temperature Difference triangle T, and Solar Factor SF) were monitored in real-time using HOBO Temperature Data loggers and Delta Ohm Photometer for Solar Radiations. Focusing on UTM Eco-Home building, the study calculates heat gain components, including transmission through walls, windows, and radiation heat gain. The findings of the study suggest that the modified OTTV equation accurately determines a building's OTTV, enhancing energy efficiency evaluations. The novelty of the study lies in the development of a new OTTV equation for the specific climate of Johor, Malaysia, and the real-time monitoring of OTTV that helps the energy managers analyze the Thermal Transmittance of Building envelopes in real-time.
publisher C EJ PUBLISHING GROUP
issn 2676-6957
2476-3055
publishDate 2025
container_volume 11
container_issue 2
doi_str_mv 10.28991/CEJ-2025-011-02-09
topic Engineering
topic_facet Engineering
accesstype gold
id WOS:001446174500009
url https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001446174500009
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