Experimental investigation of overall energy performance in Algerian office building integrated photovoltaic window under semi-arid climate

Building integrated photovoltaic (BIPV) energy has now become one of the most significant renewable energy alternatives for providing natural daylight and clean energy. As such, this study was conducted for the first time in Algeria to experimentally evaluate the BIPV window energy and lighting ener...

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Main Authors: Abdelhakim, M., Kandar, M. Z., Lim, Y. W.
Format: Article
Published: Solarlits 2019
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Online Access:http://eprints.utm.my/id/eprint/91259/
http://www.dx.doi.org/10.15627/jd.2019.3
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Institution: Universiti Teknologi Malaysia
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spelling my.utm.912592021-06-30T11:59:43Z http://eprints.utm.my/id/eprint/91259/ Experimental investigation of overall energy performance in Algerian office building integrated photovoltaic window under semi-arid climate Abdelhakim, M. Kandar, M. Z. Lim, Y. W. SB469-476 Landcsape architecture Building integrated photovoltaic (BIPV) energy has now become one of the most significant renewable energy alternatives for providing natural daylight and clean energy. As such, this study was conducted for the first time in Algeria to experimentally evaluate the BIPV window energy and lighting energy savings of a typical office building under the semi-arid climate condition. Apart from using the Energy Plus and Integrated Environment Solution-Virtual environment (IES-VE) energy simulation tools in the experimental validation, the daylighting control method and the dynamic Useful Daylight Illuminance (UDI) were also utilized to analyse the daylighting performance as well as the lighting energy of BIPV windows with different transparency levels at various cardinal orientations. The field measurements had revealed the overall energy model to be consistent and in good agreement with the EnergyPlus and the IESVE simulation models, where the tested PV module was found to have provided not only a 20% Visible Light Transmittance (VLT) of uniformed daylight with low illuminance level, but also thermal comfort and a considerable amount of clean energy. The simulated results had demonstrated a substantial improvement in cooling energy and glare reduction of the PV modules as compared to the base-model, where the only BIPV window configuration was achieved good area of UDI 300-700 lux is facing the South orientation and 30% VLT. In conclusion, the application of the thin film BIPV windows with different transparency and orientation levels can thus be regarded as an effective solution for minimizing the lighting energy consumption through its energy production instead of daylighting utilization. Solarlits 2019 Article PeerReviewed Abdelhakim, M. and Kandar, M. Z. and Lim, Y. W. (2019) Experimental investigation of overall energy performance in Algerian office building integrated photovoltaic window under semi-arid climate. Journal of Daylighting, 6 (1). pp. 23-41. ISSN 2383-8701 http://www.dx.doi.org/10.15627/jd.2019.3 DOI: 10.15627/jd.2019.3
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic SB469-476 Landcsape architecture
spellingShingle SB469-476 Landcsape architecture
Abdelhakim, M.
Kandar, M. Z.
Lim, Y. W.
Experimental investigation of overall energy performance in Algerian office building integrated photovoltaic window under semi-arid climate
description Building integrated photovoltaic (BIPV) energy has now become one of the most significant renewable energy alternatives for providing natural daylight and clean energy. As such, this study was conducted for the first time in Algeria to experimentally evaluate the BIPV window energy and lighting energy savings of a typical office building under the semi-arid climate condition. Apart from using the Energy Plus and Integrated Environment Solution-Virtual environment (IES-VE) energy simulation tools in the experimental validation, the daylighting control method and the dynamic Useful Daylight Illuminance (UDI) were also utilized to analyse the daylighting performance as well as the lighting energy of BIPV windows with different transparency levels at various cardinal orientations. The field measurements had revealed the overall energy model to be consistent and in good agreement with the EnergyPlus and the IESVE simulation models, where the tested PV module was found to have provided not only a 20% Visible Light Transmittance (VLT) of uniformed daylight with low illuminance level, but also thermal comfort and a considerable amount of clean energy. The simulated results had demonstrated a substantial improvement in cooling energy and glare reduction of the PV modules as compared to the base-model, where the only BIPV window configuration was achieved good area of UDI 300-700 lux is facing the South orientation and 30% VLT. In conclusion, the application of the thin film BIPV windows with different transparency and orientation levels can thus be regarded as an effective solution for minimizing the lighting energy consumption through its energy production instead of daylighting utilization.
format Article
author Abdelhakim, M.
Kandar, M. Z.
Lim, Y. W.
author_facet Abdelhakim, M.
Kandar, M. Z.
Lim, Y. W.
author_sort Abdelhakim, M.
title Experimental investigation of overall energy performance in Algerian office building integrated photovoltaic window under semi-arid climate
title_short Experimental investigation of overall energy performance in Algerian office building integrated photovoltaic window under semi-arid climate
title_full Experimental investigation of overall energy performance in Algerian office building integrated photovoltaic window under semi-arid climate
title_fullStr Experimental investigation of overall energy performance in Algerian office building integrated photovoltaic window under semi-arid climate
title_full_unstemmed Experimental investigation of overall energy performance in Algerian office building integrated photovoltaic window under semi-arid climate
title_sort experimental investigation of overall energy performance in algerian office building integrated photovoltaic window under semi-arid climate
publisher Solarlits
publishDate 2019
url http://eprints.utm.my/id/eprint/91259/
http://www.dx.doi.org/10.15627/jd.2019.3
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