LAPSE:2023.15277
Published Article

LAPSE:2023.15277
Heat Transfer Analysis of a Co-Current Heat Exchanger with Two Rectangular Mini-Channels
March 2, 2023
Abstract
This paper presents the results of research on heat transfer during fluid flow in a heat exchanger with two rectangular mini-channels. There was Fluorinert FC-72 flow, heated by the plate in the hot mini-channel, and co-current flow of distilled water in the cold mini-channel. Both fluids were separated by the copper plate. A thermal imaging camera was used to measure the temperature distribution of the outer surface of the heated plate. The purpose of the calculations was to determine the heat transfer coefficients at the contact surfaces: the heated plate—FC-72 and FC-72—the copper plate. Two mathematical models have been proposed to describe the heat flow. In the 1D approach, only the heat flow direction perpendicular to the fluid flow direction was assumed. In the 2D model, it was assumed that the temperature of the heated plate and FC-72 and the copper plate meet the appropriate energy equation, supplemented by the boundary conditions system. In this case, the Trefftz functions were used in numerical calculations. In the 1D model, the heat transfer coefficient at the interface between FC-72 and the copper plate was determined by theoretical correlations. The analysis of the results showed that the values and distributions of the heat transfer coefficient determined using both models were similar.
This paper presents the results of research on heat transfer during fluid flow in a heat exchanger with two rectangular mini-channels. There was Fluorinert FC-72 flow, heated by the plate in the hot mini-channel, and co-current flow of distilled water in the cold mini-channel. Both fluids were separated by the copper plate. A thermal imaging camera was used to measure the temperature distribution of the outer surface of the heated plate. The purpose of the calculations was to determine the heat transfer coefficients at the contact surfaces: the heated plate—FC-72 and FC-72—the copper plate. Two mathematical models have been proposed to describe the heat flow. In the 1D approach, only the heat flow direction perpendicular to the fluid flow direction was assumed. In the 2D model, it was assumed that the temperature of the heated plate and FC-72 and the copper plate meet the appropriate energy equation, supplemented by the boundary conditions system. In this case, the Trefftz functions were used in numerical calculations. In the 1D model, the heat transfer coefficient at the interface between FC-72 and the copper plate was determined by theoretical correlations. The analysis of the results showed that the values and distributions of the heat transfer coefficient determined using both models were similar.
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Keywords
co-current heat exchanger, flow boiling, heat transfer coefficient, mini-channel, Trefftz functions
Subject
Suggested Citation
Piasecka M, Hożejowska S, Pawińska A, Strąk D. Heat Transfer Analysis of a Co-Current Heat Exchanger with Two Rectangular Mini-Channels. (2023). LAPSE:2023.15277
Author Affiliations
Piasecka M: Faculty of Mechatronics and Mechanical Engineering, Kielce University of Technology, 25-314 Kielce, Poland [ORCID]
Hożejowska S: Faculty of Management and Computer Modelling, Kielce University of Technology, 25-314 Kielce, Poland [ORCID]
Pawińska A: Faculty of Management and Computer Modelling, Kielce University of Technology, 25-314 Kielce, Poland [ORCID]
Strąk D: Faculty of Mechatronics and Mechanical Engineering, Kielce University of Technology, 25-314 Kielce, Poland
Hożejowska S: Faculty of Management and Computer Modelling, Kielce University of Technology, 25-314 Kielce, Poland [ORCID]
Pawińska A: Faculty of Management and Computer Modelling, Kielce University of Technology, 25-314 Kielce, Poland [ORCID]
Strąk D: Faculty of Mechatronics and Mechanical Engineering, Kielce University of Technology, 25-314 Kielce, Poland
Journal Name
Energies
Volume
15
Issue
4
First Page
1340
Year
2022
Publication Date
2022-02-12
ISSN
1996-1073
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Original Submission
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PII: en15041340, Publication Type: Journal Article
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LAPSE:2023.15277
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https://doi.org/10.3390/en15041340
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Mar 2, 2023
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