LAPSE:2023.8456
Published Article
LAPSE:2023.8456
Exergy, Economic and Environmental Analysis of a Direct Absorption Parabolic Trough Collector Filled with Porous Metal Foam
Murtadha Zahi Khattar, Mohammad Mahdi Heyhat
February 24, 2023
Abstract
A direct absorption parabolic trough solar collector (DAPTC) integrated with porous foam as a volumetric absorber has the potential to be applied as an energy conversion integrant of future renewable energy systems. The present study comprehensively analyzes a DAPTC in terms of exergy, economic, and environmental analysis for different porous configuration inserts in the absorber tube. Ten different arrangements of porous foam are examined at several HTF flow rates (40−120 L/h) and inlet temperatures (20−40 °C). The exergy efficiency, entropy generation, Bejan number, and pumping power are investigated for all cases. Obtained results indicate that fully filling the absorber tube with porous foam leads to a maximum exergy efficiency of 20.4% at the lowest inlet temperature (20 °C) and highest flow rate (120 L/h). However, the Bejan number reaches its minimum value due to the highest pumping power in this case. Consequently, all mentioned performance parameters should be considered simultaneously. Finally, the environmental and economic analyses are conducted. The results show that fully filling the absorber tube with porous foam reflects the best heat production cost, which can reduced the embodied energy, embodied water, and CO2 emission by 559.5 MJ, 1520.8 kL, and 339.62 kg, respectively, compared to the base case at the flow rate of 120 L/h.
Keywords
different arrangements, direct absorption, energy and exergy analysis, heat transfer enhancement, metal foam, parabolic trough collector
Suggested Citation
Khattar MZ, Heyhat MM. Exergy, Economic and Environmental Analysis of a Direct Absorption Parabolic Trough Collector Filled with Porous Metal Foam. (2023). LAPSE:2023.8456
Author Affiliations
Khattar MZ: Faculty of Mechanical Engineering, Tarbiat Modares University, Tehran 14117-13116, Iran [ORCID]
Heyhat MM: Faculty of Mechanical Engineering, Tarbiat Modares University, Tehran 14117-13116, Iran
Journal Name
Energies
Volume
15
Issue
21
First Page
8150
Year
2022
Publication Date
2022-11-01
ISSN
1996-1073
Version Comments
Original Submission
Other Meta
PII: en15218150, Publication Type: Journal Article
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https://doi.org/10.3390/en15218150
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