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Analysis to determine the thermodynamic performance of a flat plate solar collector
Abstract
Abstract: This paper presents the thermal performance of solar flat plate collector considering various ambient, weather and design conditions of the site under review (Benin City, Edo State). The result shows that the outlet water temperatures were dependent on the weather condition (solar radiation intensity, cloud cover) with outlet water temperature of 6and 328.36W as Energy gained of the collector obtained. This shows that the use of this flat plate solar collector will be viable for domestic heating application.
Keywords
References
- Duffie, J.A. and Beckman, W.A. (2013): Solar Engineering of Thermal Processes. John Wiley and Sons, inc., New York.
- Goswami, Y.D (2015): Principles of solar engineering. Third edition, New York. Kalogirou S. A. (2003): “The potential of solar industrial process heat applications”. Application Energy; pp76:337–61.
- Kalogirou, S.A. (2004): Solar thermal collectors and applications. Progress in Energy and Combustion Science 30, pp. 231–295.
Details
Primary Language
English
Subjects
Energy Systems Engineering (Other)
Journal Section
Research Article
Publication Date
June 9, 2020
Submission Date
April 11, 2020
Acceptance Date
May 1, 2020
Published in Issue
Year 2020 Volume: 1 Number: 1
APA
Omo-oghogho, E., & Aliu, S. (2020). Analysis to determine the thermodynamic performance of a flat plate solar collector. Renewable Energy Sources Energy Policy and Energy Management, 1(1), 7-14. https://izlik.org/JA67AU97DZ
AMA
1.Omo-oghogho E, Aliu S. Analysis to determine the thermodynamic performance of a flat plate solar collector. RESEPEM. 2020;1(1):7-14. https://izlik.org/JA67AU97DZ
Chicago
Omo-oghogho, Eghosa, and Sufianu Aliu. 2020. “Analysis to Determine the Thermodynamic Performance of a Flat Plate Solar Collector”. Renewable Energy Sources Energy Policy and Energy Management 1 (1): 7-14. https://izlik.org/JA67AU97DZ.
EndNote
Omo-oghogho E, Aliu S (June 1, 2020) Analysis to determine the thermodynamic performance of a flat plate solar collector. Renewable Energy Sources Energy Policy and Energy Management 1 1 7–14.
IEEE
[1]E. Omo-oghogho and S. Aliu, “Analysis to determine the thermodynamic performance of a flat plate solar collector”, RESEPEM, vol. 1, no. 1, pp. 7–14, June 2020, [Online]. Available: https://izlik.org/JA67AU97DZ
ISNAD
Omo-oghogho, Eghosa - Aliu, Sufianu. “Analysis to Determine the Thermodynamic Performance of a Flat Plate Solar Collector”. Renewable Energy Sources Energy Policy and Energy Management 1/1 (June 1, 2020): 7-14. https://izlik.org/JA67AU97DZ.
JAMA
1.Omo-oghogho E, Aliu S. Analysis to determine the thermodynamic performance of a flat plate solar collector. RESEPEM. 2020;1:7–14.
MLA
Omo-oghogho, Eghosa, and Sufianu Aliu. “Analysis to Determine the Thermodynamic Performance of a Flat Plate Solar Collector”. Renewable Energy Sources Energy Policy and Energy Management, vol. 1, no. 1, June 2020, pp. 7-14, https://izlik.org/JA67AU97DZ.
Vancouver
1.Eghosa Omo-oghogho, Sufianu Aliu. Analysis to determine the thermodynamic performance of a flat plate solar collector. RESEPEM [Internet]. 2020 Jun. 1;1(1):7-14. Available from: https://izlik.org/JA67AU97DZ