IDEAS home Printed from https://ideas.repec.org/a/epw/energy/v4y2024i4id7153.html

Design of a Solar Air Heating Collector from Steel Cans

Author

Listed:
  • Abdlmanam S. A. Elmaryami
  • Ramadan M. H. Zakri Elsanousi
  • Abdulrhman F. M.
  • Mahmoud Abdelrazek Ahmida
  • Rahel G. Rahel
  • Ali F. A.
  • Adam M. M.
  • Omima S. A.

Abstract

Numerous research works have examined the efficiency of both single- and double-pass solar air heaters. These investigations cover the pressure drop in ducts, flow phenomena, heat transfer enhancement, and solar air heater design. Recycled aluminum cans are used as the absorbing material in this project’s experimental work, which is based on an energy analysis of a solar air heating collector. The tops and bottoms of the cans will be drilled out, and they will be assembled into vertical columns through which air flows. The sun heats the cans with black paint. The air rising through the can’s columns absorbs the solar heat. A single-pass solar air heating collector with a single cover has been created. The effectiveness of the most important design and environmental parameters, such as mass flow rate and ambient temperature, on the model’s performance, was examined. Temperatures at the inlet and outlet, as well as thermal heat flow, were calculated. All of the can columns receive room air from a manifold at the bottom, and heated air is collected and distributed back to the room by a manifold akin to the one at the top of the collector. An efficient collector combines a large amount of heat transfer area from the cans to the air with uniform air distribution throughout the collector. The creation and testing of an effective single-glass air solar collector with an absorber plate composed of recyclable aluminum cans (RAC) are detailed in this project. This collector was created as a suggestion on how to construct air solar collector absorber plates at a reasonable cost by recycling recyclable materials. The collector’s absorber plate was made up of eight airflow channels with a circular cross-section made of 54 recyclable aluminum cans. Seven reusable cans, each with an absorptance of 0.903, were painted black using an opaque black paint that was widely available.

Suggested Citation

  • Abdlmanam S. A. Elmaryami & Ramadan M. H. Zakri Elsanousi & Abdulrhman F. M. & Mahmoud Abdelrazek Ahmida & Rahel G. Rahel & Ali F. A. & Adam M. M. & Omima S. A., 2024. "Design of a Solar Air Heating Collector from Steel Cans," European Journal of Energy Research, European Open Science, vol. 4(4), pages 11-18, September.
  • Handle: RePEc:epw:energy:v:4:y:2024:i:4:id:7153
    DOI: 10.24018/ejenergy.2024.4.4.153
    as

    Download full text from publisher

    File URL: https://eu-opensci.org/index.php/ejenergy/article/view/7153
    File Function: Abstract page
    Download Restriction: no

    File URL: https://eu-opensci.org/index.php/ejenergy/article/download/7153/1111
    File Function: Full text
    Download Restriction: no

    File URL: https://libkey.io/10.24018/ejenergy.2024.4.4.153?utm_source=ideas
    LibKey link: if access is restricted and if your library uses this service, LibKey will redirect you to where you can use your library subscription to access this item
    ---><---

    References listed on IDEAS

    as
    1. Gupta, M.K. & Kaushik, S.C., 2009. "Performance evaluation of solar air heater for various artificial roughness geometries based on energy, effective and exergy efficiencies," Renewable Energy, Elsevier, vol. 34(3), pages 465-476.
    2. Singh, Satyender & Dhiman, Prashant, 2016. "Thermal performance of double pass packed bed solar air heaters – A comprehensive review," Renewable and Sustainable Energy Reviews, Elsevier, vol. 53(C), pages 1010-1031.
    3. Ho, Chii-Dong & Lin, Chun-Sheng & Chuang, Yu-Chuan & Chao, Chun-Chieh, 2013. "Performance improvement of wire mesh packed double-pass solar air heaters with external recycle," Renewable Energy, Elsevier, vol. 57(C), pages 479-489.
    4. Nowzari, Raheleh & Aldabbagh, L.B.Y. & Egelioglu, F., 2014. "Single and double pass solar air heaters with partially perforated cover and packed mesh," Energy, Elsevier, vol. 73(C), pages 694-702.
    5. Karim, M.A. & Perez, E. & Amin, Z.M., 2014. "Mathematical modelling of counter flow v-grove solar air collector," Renewable Energy, Elsevier, vol. 67(C), pages 192-201.
    6. Ravi, Ravi Kant & Saini, Rajeshwer Prasad, 2016. "A review on different techniques used for performance enhancement of double pass solar air heaters," Renewable and Sustainable Energy Reviews, Elsevier, vol. 56(C), pages 941-952.
    7. Garg, H.P. & Jha, Ranjana & Choudhury, C. & Datta, Gouri, 1991. "Theoretical analysis on a new finned type solar air heater," Energy, Elsevier, vol. 16(10), pages 1231-1238.
    Full references (including those not matched with items on IDEAS)

    Most related items

    These are the items that most often cite the same works as this one and are cited by the same works as this one.
    1. Chii-Dong Ho & Hsuan Chang & Ching-Fang Hsiao & Yu-Chen Lin, 2021. "Optimizing Thermal Efficiencies of Double-Pass Cross-Corrugated Solar Air Heaters on Various Configurations with External Recycling," Energies, MDPI, vol. 14(13), pages 1-23, July.
    2. Chii-Dong Ho & Hsuan Chang & Zih-Syuan Hong & Chien-Chang Huang & Yu-Han Chen, 2020. "Increasing the Device Performance of Recycling Double-Pass W-Ribs Solar Air Heaters," Energies, MDPI, vol. 13(9), pages 1-16, April.
    3. Varun Pratap Singh & Siddharth Jain & Ashish Karn & Ashwani Kumar & Gaurav Dwivedi & Chandan Swaroop Meena & Nitesh Dutt & Aritra Ghosh, 2022. "Recent Developments and Advancements in Solar Air Heaters: A Detailed Review," Sustainability, MDPI, vol. 14(19), pages 1-55, September.
    4. Chii-Dong Ho & Hsuan Chang & Ching-Fang Hsiao & Chien-Chang Huang, 2018. "Device Performance Improvement of Recycling Double-Pass Cross-Corrugated Solar Air Collectors," Energies, MDPI, vol. 11(2), pages 1-18, February.
    5. Alam, Tabish & Kim, Man-Hoe, 2017. "Performance improvement of double-pass solar air heater – A state of art of review," Renewable and Sustainable Energy Reviews, Elsevier, vol. 79(C), pages 779-793.
    6. Eduardo Venegas-Reyes & Naghelli Ortega-Avila & Yuridiana Rocio Galindo-Luna & Jonathan Ibarra-Bahena & Erick Cesar López-Vidaña & Ulises Dehesa-Carrasco, 2025. "Thermal Performance and Cost Assessment Analysis of a Double-Pass V-Trough Solar Air Heater," Clean Technol., MDPI, vol. 7(1), pages 1-18, March.
    7. Singh, Satyender & Dhiman, Prashant, 2016. "Thermal performance of double pass packed bed solar air heaters – A comprehensive review," Renewable and Sustainable Energy Reviews, Elsevier, vol. 53(C), pages 1010-1031.
    8. Chii-Dong Ho & Hsuan Chang & Chih-Wei Yeh & Choon-Aun Ng & Ping-Cheng Hsieh, 2023. "Optimizing Device Performance of Multi-Pass Flat-Plate Solar Air Heaters on Various Recycling Configurations," Energies, MDPI, vol. 16(6), pages 1-22, March.
    9. Razak, A.A. & Majid, Z.A.A. & Azmi, W.H. & Ruslan, M.H. & Choobchian, Sh. & Najafi, G. & Sopian, K., 2016. "Review on matrix thermal absorber designs for solar air collector," Renewable and Sustainable Energy Reviews, Elsevier, vol. 64(C), pages 682-693.
    10. Mandal, Soumya & Ghosh, Subir Kumar, 2020. "Experimental investigation of the performance of a double pass solar water heater with reflector," Renewable Energy, Elsevier, vol. 149(C), pages 631-640.
    11. Vyas, Sagar & Sharma, Amit Kumar & Rai, Anant Kumar, 2024. "Double pass solar air heater with aerofoil and bio-inspired fins: A numerical analysis of thermohydraulic performance," Energy, Elsevier, vol. 311(C).
    12. Vengadesan, Elumalai & Senthil, Ramalingam, 2020. "A review on recent developments in thermal performance enhancement methods of flat plate solar air collector," Renewable and Sustainable Energy Reviews, Elsevier, vol. 134(C).
    13. Kumar, Rajneesh & Varun, & Kumar, Anoop, 2016. "Thermal and fluid dynamic characteristics of flow through triangular cross-sectional duct: A review," Renewable and Sustainable Energy Reviews, Elsevier, vol. 61(C), pages 123-140.
    14. Ali Hassan & Ali M. Nikbakht & Sabrina Fawzia & Prasad Yarlagadda & Azharul Karim, 2024. "A Comprehensive Review of the Thermohydraulic Improvement Potentials in Solar Air Heaters through an Energy and Exergy Analysis," Energies, MDPI, vol. 17(7), pages 1-43, March.
    15. Kabeel, A.E. & Hamed, Mofreh H. & Omara, Z.M. & Kandeal, A.W., 2017. "Solar air heaters: Design configurations, improvement methods and applications – A detailed review," Renewable and Sustainable Energy Reviews, Elsevier, vol. 70(C), pages 1189-1206.
    16. Rajarajeswari, K. & Sreekumar, A., 2016. "Matrix solar air heaters – A review," Renewable and Sustainable Energy Reviews, Elsevier, vol. 57(C), pages 704-712.
    17. Kumar, Anil & Kim, Man-Hoe, 2017. "Solar air-heating system with packed-bed energy-storage systems," Renewable and Sustainable Energy Reviews, Elsevier, vol. 72(C), pages 215-227.
    18. Gürbüz, Emine Yağız & Şahinkesen, İstemihan & Kusun, Barış & Tuncer, Azim Doğuş & Keçebaş, Ali, 2023. "Enhancing the performance of an unglazed solar air collector using mesh tubes and Fe3O4 nano-enhanced absorber coating," Energy, Elsevier, vol. 277(C).
    19. Chii-Dong Ho & Ching-Fang Hsiao & Hsuan Chang & Yi-En Tien & Zih-Syuan Hong, 2017. "Efficiency of Recycling Double-Pass V-Corrugated Solar Air Collectors," Energies, MDPI, vol. 10(7), pages 1-15, June.
    20. Shaeli, Mays N. & Jalil, Jalal M. & Baccar, Mounir, 2024. "Improving the performance of solar photovoltaic thermal cells using jet impingement and phase change materials cooling technology," Renewable Energy, Elsevier, vol. 227(C).

    More about this item

    Keywords

    ;
    ;
    ;
    ;

    Statistics

    Access and download statistics

    Corrections

    All material on this site has been provided by the respective publishers and authors. You can help correct errors and omissions. When requesting a correction, please mention this item's handle: RePEc:epw:energy:v:4:y:2024:i:4:id:7153. See general information about how to correct material in RePEc.

    If you have authored this item and are not yet registered with RePEc, we encourage you to do it here. This allows to link your profile to this item. It also allows you to accept potential citations to this item that we are uncertain about.

    If CitEc recognized a bibliographic reference but did not link an item in RePEc to it, you can help with this form .

    If you know of missing items citing this one, you can help us creating those links by adding the relevant references in the same way as above, for each refering item. If you are a registered author of this item, you may also want to check the "citations" tab in your RePEc Author Service profile, as there may be some citations waiting for confirmation.

    For technical questions regarding this item, or to correct its authors, title, abstract, bibliographic or download information, contact: Support Team (email available below). General contact details of provider: https://eu-opensci.org/index.php/ejenergy .

    Please note that corrections may take a couple of weeks to filter through the various RePEc services.

    IDEAS is a RePEc service. RePEc uses bibliographic data supplied by the respective publishers.