LAPSE:2023.11347
Published Article

LAPSE:2023.11347
Thermodynamic Analysis of an Experimental Model of a Solar-Heat Supply System
February 27, 2023
Abstract
In this study, the problem of the operability of the solar-heat supply system in the cold region of Kazakhstan receiving minimal solar radiation was studied. The importance of this study lies in the question of how a dual-circuit solar installation can work for productivity in the northern regions of Kazakhstan. In the course of the study, an efficiency reduced from the energy efficiency increased by using a transparent glazed window reduced the supply of coolant into the pipe. Cold liquid heat enters the resulting stream, heat transfer increases, and the intermediate walls heat up. In this study, a method was used to determine the thermal characteristics of a glazed flat collector, which contains a brief and accurate description. From the results obtained, it can be concluded that the effectiveness of 2.40 and 2.53 was recognized in this study. It was also investigated that the thermal capacity of the solar collector depends on the thickness of the absorbing layer. Having conducted this experimental study, we were convinced that it is reliable for the northern regions of Kazakhstan.
In this study, the problem of the operability of the solar-heat supply system in the cold region of Kazakhstan receiving minimal solar radiation was studied. The importance of this study lies in the question of how a dual-circuit solar installation can work for productivity in the northern regions of Kazakhstan. In the course of the study, an efficiency reduced from the energy efficiency increased by using a transparent glazed window reduced the supply of coolant into the pipe. Cold liquid heat enters the resulting stream, heat transfer increases, and the intermediate walls heat up. In this study, a method was used to determine the thermal characteristics of a glazed flat collector, which contains a brief and accurate description. From the results obtained, it can be concluded that the effectiveness of 2.40 and 2.53 was recognized in this study. It was also investigated that the thermal capacity of the solar collector depends on the thickness of the absorbing layer. Having conducted this experimental study, we were convinced that it is reliable for the northern regions of Kazakhstan.
Record ID
Keywords
flat solar collector, heat pump, solar radiation, solar-heat supply system
Subject
Suggested Citation
Kunelbayev M, Bigaliyeva Z, Tuleshov Y, Ibekeyev S, Kerimkulov D. Thermodynamic Analysis of an Experimental Model of a Solar-Heat Supply System. (2023). LAPSE:2023.11347
Author Affiliations
Kunelbayev M: Al-Farabi Kazakh National University, Institute of Information and Computational Technologies, Almaty 050010, Kazakhstan
Bigaliyeva Z: Kazakh National Research Technical University Named after K. Satbayev, Almaty 050013, Kazakhstan
Tuleshov Y: Kazakh National Research Technical University Named after K. Satbayev, Almaty 050013, Kazakhstan
Ibekeyev S: Kazakh National Research Technical University Named after K. Satbayev, Almaty 050013, Kazakhstan [ORCID]
Kerimkulov D: Kazakh National Research Technical University Named after K. Satbayev, Almaty 050013, Kazakhstan
Bigaliyeva Z: Kazakh National Research Technical University Named after K. Satbayev, Almaty 050013, Kazakhstan
Tuleshov Y: Kazakh National Research Technical University Named after K. Satbayev, Almaty 050013, Kazakhstan
Ibekeyev S: Kazakh National Research Technical University Named after K. Satbayev, Almaty 050013, Kazakhstan [ORCID]
Kerimkulov D: Kazakh National Research Technical University Named after K. Satbayev, Almaty 050013, Kazakhstan
Journal Name
Processes
Volume
11
Issue
2
First Page
451
Year
2023
Publication Date
2023-02-02
ISSN
2227-9717
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Original Submission
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PII: pr11020451, Publication Type: Journal Article
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LAPSE:2023.11347
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https://doi.org/10.3390/pr11020451
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[v1] (Original Submission)
Feb 27, 2023
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Feb 27, 2023
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