Evaluating Passive and Active Retrofit Strategies to Improve Energy Performance in Existing Federal Buildings in the UAE – Northern Emirates

This study evaluates passive and active retrofit strategies to enhance the energy performance of existing federal buildings in the Northern Emirates of the UAE. Using IES-VE simulation, the research quantified the technical, environmental, and financial outcomes of multiple retrofit scenarios. The r...

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Main Author: ALAWADHI, WAFAA YOUSEF (author)
Published: 2025
Online Access:https://bspace.buid.ac.ae/handle/1234/3384
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author ALAWADHI, WAFAA YOUSEF
author_facet ALAWADHI, WAFAA YOUSEF
author_role author
dc.contributor.none.fl_str_mv Prof Abu Hijleh, Bassam
dc.creator.none.fl_str_mv ALAWADHI, WAFAA YOUSEF
dc.date.none.fl_str_mv 2025-07
2026-01-12T12:52:19Z
dc.format.none.fl_str_mv application/pdf
dc.identifier.none.fl_str_mv 20161291
https://bspace.buid.ac.ae/handle/1234/3384
dc.language.none.fl_str_mv en
dc.publisher.none.fl_str_mv The British University in Dubai (BUiD)
dc.title.none.fl_str_mv Evaluating Passive and Active Retrofit Strategies to Improve Energy Performance in Existing Federal Buildings in the UAE – Northern Emirates
dc.type.none.fl_str_mv Thesis
description This study evaluates passive and active retrofit strategies to enhance the energy performance of existing federal buildings in the Northern Emirates of the UAE. Using IES-VE simulation, the research quantified the technical, environmental, and financial outcomes of multiple retrofit scenarios. The results showed that glazing and insulation reduced energy consumption by 14.42% and 14.71%, respectively, while VAV-HVAC with heat recovery achieved 15.35% savings. BMS integration and lighting retrofits (LEDs, controls, and sunlight tubes) reduced energy use by up to 25%, and PV/BIPV systems generated 123.63–149.87 MWh annually. The combined retrofit package achieved a 44.79% reduction in total energy use (≈270.51 MWh/year) with a six-year payback and a 16.9% ROI. The findings align directly with the UAE Energy Strategy 2050, supporting targets of 40% demand reduction, 40% efficiency improvement, and 50% clean-energy contribution. The study confirms that these retrofit measures are technically feasible and economically viable, bridging regional disparities and advancing the national sustainability goals. Although limited to one case study, the results provide a replicable model for federal buildings across the UAE, transforming them from energy-intensive assets into exemplary sustainable facilities. Keywords: energy efficiency, federal buildings, UAE, Northern Emirates, retrofit, passive & active technologies, IES-VE simulation, BMS, PV, BIPV, sunlight tube, HVAC-VAV
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publisher.none.fl_str_mv The British University in Dubai (BUiD)
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spelling Evaluating Passive and Active Retrofit Strategies to Improve Energy Performance in Existing Federal Buildings in the UAE – Northern EmiratesALAWADHI, WAFAA YOUSEFThis study evaluates passive and active retrofit strategies to enhance the energy performance of existing federal buildings in the Northern Emirates of the UAE. Using IES-VE simulation, the research quantified the technical, environmental, and financial outcomes of multiple retrofit scenarios. The results showed that glazing and insulation reduced energy consumption by 14.42% and 14.71%, respectively, while VAV-HVAC with heat recovery achieved 15.35% savings. BMS integration and lighting retrofits (LEDs, controls, and sunlight tubes) reduced energy use by up to 25%, and PV/BIPV systems generated 123.63–149.87 MWh annually. The combined retrofit package achieved a 44.79% reduction in total energy use (≈270.51 MWh/year) with a six-year payback and a 16.9% ROI. The findings align directly with the UAE Energy Strategy 2050, supporting targets of 40% demand reduction, 40% efficiency improvement, and 50% clean-energy contribution. The study confirms that these retrofit measures are technically feasible and economically viable, bridging regional disparities and advancing the national sustainability goals. Although limited to one case study, the results provide a replicable model for federal buildings across the UAE, transforming them from energy-intensive assets into exemplary sustainable facilities. Keywords: energy efficiency, federal buildings, UAE, Northern Emirates, retrofit, passive & active technologies, IES-VE simulation, BMS, PV, BIPV, sunlight tube, HVAC-VAVThe British University in Dubai (BUiD)Prof Abu Hijleh, Bassam2026-01-12T12:52:19Z2025-07Thesisapplication/pdf20161291https://bspace.buid.ac.ae/handle/1234/3384enoai:bspace.buid.ac.ae:1234/33842026-01-12T12:52:49Z
spellingShingle Evaluating Passive and Active Retrofit Strategies to Improve Energy Performance in Existing Federal Buildings in the UAE – Northern Emirates
ALAWADHI, WAFAA YOUSEF
title Evaluating Passive and Active Retrofit Strategies to Improve Energy Performance in Existing Federal Buildings in the UAE – Northern Emirates
title_full Evaluating Passive and Active Retrofit Strategies to Improve Energy Performance in Existing Federal Buildings in the UAE – Northern Emirates
title_fullStr Evaluating Passive and Active Retrofit Strategies to Improve Energy Performance in Existing Federal Buildings in the UAE – Northern Emirates
title_full_unstemmed Evaluating Passive and Active Retrofit Strategies to Improve Energy Performance in Existing Federal Buildings in the UAE – Northern Emirates
title_short Evaluating Passive and Active Retrofit Strategies to Improve Energy Performance in Existing Federal Buildings in the UAE – Northern Emirates
title_sort Evaluating Passive and Active Retrofit Strategies to Improve Energy Performance in Existing Federal Buildings in the UAE – Northern Emirates
url https://bspace.buid.ac.ae/handle/1234/3384