Performance Enhancement of Double-Pass Solar Air Heater Using Phase Change Materials and Air Flow Turbulators

In this study, two techniques to improve the thermal performance of the double-pass solar air heater are experimentally investigated. The first is integrating a phase change material (PCM) as a thermal storage system, and the second is using flow turbulators with the absorber plate to enhance the h...

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發表在:Journal of Engineering and Sustainable Development
Main Authors: Zainab Nadeem Suzah, Ahmed J. Hamad, Abdul Hadi N. Khalifa
格式: Article
語言:阿拉伯语
出版: Mustansiriyah University/College of Engineering 2025-08-01
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在線閱讀:https://jeasd.uomustansiriyah.edu.iq/index.php/jeasd/article/view/2498
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author Zainab Nadeem Suzah
Ahmed J. Hamad
Abdul Hadi N. Khalifa
author_facet Zainab Nadeem Suzah
Ahmed J. Hamad
Abdul Hadi N. Khalifa
author_sort Zainab Nadeem Suzah
collection DOAJ
container_title Journal of Engineering and Sustainable Development
description In this study, two techniques to improve the thermal performance of the double-pass solar air heater are experimentally investigated. The first is integrating a phase change material (PCM) as a thermal storage system, and the second is using flow turbulators with the absorber plate to enhance the heat transfer in the solar air heater (SAH). Four different arrangements of the modified SAH absorber plate integrated with and without PCM and flow turbulators with used longitudinal fins on the plate's lower surface are investigated. The modified SAH was examined based on three air flow rates, 0.002, 0.005, and 0.012 kg/s, under Baghdad city climatic conditions. The results demonstrated that the modified double-pass SAH integrated with PCM had a higher performance than the conventional SAH. The outlet air temperature in modified cases 1, 2, and 3 was higher by about 22, 14, and 9%, respectively, compared with the conventional case of flat plate. The flow turbulator of V-shaped revealed optimal performance where the improvement in thermal efficiency was 35% compared with 26% and 19% for other flow turbulators cases 1, and 2, respectively. was observed that the use of PCM increased the operating time by 2 hours after the sunset.
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2520-0925
language Arabic
publishDate 2025-08-01
publisher Mustansiriyah University/College of Engineering
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spelling doaj-art-ca148ea4c11f40bb95e765e10dd7044e2025-08-31T05:25:04ZaraMustansiriyah University/College of EngineeringJournal of Engineering and Sustainable Development2520-09172520-09252025-08-0129510.31272/jeasd.2498Performance Enhancement of Double-Pass Solar Air Heater Using Phase Change Materials and Air Flow TurbulatorsZainab Nadeem Suzah0https://orcid.org/0009-0004-2537-3206Ahmed J. Hamad1https://orcid.org/0000-0002-9885-2054Abdul Hadi N. Khalifa2https://orcid.org/0000-0002-3024-8926Department of Mechanical Power Engineering, Middle Technical University. Baghdad, IraqDepartment of Mechanical Power Engineering, Middle Technical University. Baghdad, IraqDepartment of Mechanical Power Engineering, Middle Technical University. Baghdad, Iraq In this study, two techniques to improve the thermal performance of the double-pass solar air heater are experimentally investigated. The first is integrating a phase change material (PCM) as a thermal storage system, and the second is using flow turbulators with the absorber plate to enhance the heat transfer in the solar air heater (SAH). Four different arrangements of the modified SAH absorber plate integrated with and without PCM and flow turbulators with used longitudinal fins on the plate's lower surface are investigated. The modified SAH was examined based on three air flow rates, 0.002, 0.005, and 0.012 kg/s, under Baghdad city climatic conditions. The results demonstrated that the modified double-pass SAH integrated with PCM had a higher performance than the conventional SAH. The outlet air temperature in modified cases 1, 2, and 3 was higher by about 22, 14, and 9%, respectively, compared with the conventional case of flat plate. The flow turbulator of V-shaped revealed optimal performance where the improvement in thermal efficiency was 35% compared with 26% and 19% for other flow turbulators cases 1, and 2, respectively. was observed that the use of PCM increased the operating time by 2 hours after the sunset. https://jeasd.uomustansiriyah.edu.iq/index.php/jeasd/article/view/2498Energy savingFlow turbulatorsPhase change materialSolar heaterThermal performance
spellingShingle Zainab Nadeem Suzah
Ahmed J. Hamad
Abdul Hadi N. Khalifa
Performance Enhancement of Double-Pass Solar Air Heater Using Phase Change Materials and Air Flow Turbulators
Energy saving
Flow turbulators
Phase change material
Solar heater
Thermal performance
title Performance Enhancement of Double-Pass Solar Air Heater Using Phase Change Materials and Air Flow Turbulators
title_full Performance Enhancement of Double-Pass Solar Air Heater Using Phase Change Materials and Air Flow Turbulators
title_fullStr Performance Enhancement of Double-Pass Solar Air Heater Using Phase Change Materials and Air Flow Turbulators
title_full_unstemmed Performance Enhancement of Double-Pass Solar Air Heater Using Phase Change Materials and Air Flow Turbulators
title_short Performance Enhancement of Double-Pass Solar Air Heater Using Phase Change Materials and Air Flow Turbulators
title_sort performance enhancement of double pass solar air heater using phase change materials and air flow turbulators
topic Energy saving
Flow turbulators
Phase change material
Solar heater
Thermal performance
url https://jeasd.uomustansiriyah.edu.iq/index.php/jeasd/article/view/2498
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AT ahmedjhamad performanceenhancementofdoublepasssolarairheaterusingphasechangematerialsandairflowturbulators
AT abdulhadinkhalifa performanceenhancementofdoublepasssolarairheaterusingphasechangematerialsandairflowturbulators