EN
TR
CFD Analysis of the Impact of Temperature Variation on Condensation and Phase Transition Performance in Heat Exchangers
Abstract
This study investigates condensation in a rectangular copper heat exchanger with six circular tubes exposed to temperature variations. Three different temperature levels (380 K, 420 K and 460 K) were compared by examining heat transfer and phase change over a 5-second period with 1.25 s increments. A transient two-dimensional analysis model was developed. Physical modeling was performed using the Volume of Fluid (VOF) phase model and the Standard k-ε turbulence model. The analysis results were monitored along two horizontal lines at different heights on the plate. The simulation results show that rapid condensation occurs at low and medium temperature levels due to high heat transfer. At the high temperature level, a delayed phase change leads to a longer condensation duration. The study serves as a guide for thermal device design by emphasizing the need to select appropriate temperature ranges while considering both the amount and duration of condensation.
Keywords
References
- W. Srimuang, W., Amatachaya, P. (2012). A review of the applications of heat pipe heat exchangers for heat recovery. Renewable and Sustainable Energy Reviews, 16(6), 4303-4315.
- Schneider, D., Lauer, M., Voigt, I., & Drossel, W. G. (2016). Development and examination of switchable heat pipes. Applied thermal engineering, 99, 857-865.
- Faghri, A. (2018). Heat pipes and thermosyphons. Handbook of thermal science and engineering, 2163-2211.
- Chen, X., Gao, P., Tan, S., Yu, Z., & Chen, C. (2018). An experimental investigation of flow boiling instability in a natural circulation loop. International Journal of Heat and Mass Transfer, 117, 1125-1134.
- Yankov, G. G., Milman, O. O., Minko, K. B., & Artemov, V. I. (2023). Simulation of the condensation processes of R113 in a horizontal pipe by the VOF method. Thermal Engineering, 70(11), 860-874.
- Su, Z., Li, Z., Wang, K., Kuang, Y., Wang, H., & Yang, J. (2024). Investigation of improved VOF method in CFD simulation of sodium heat pipes using a multi-zone modeling method. International Communications in Heat and Mass Transfer, 157, 107669.
- M Najafian, M., & Mortazavi, S. (2023). A numerical study of drop evaporation at high density ratios using Front-Tracking method. Computers & Mathematics with Applications, 134, 1-15.
- Tang, M., Xin, Z., & Wang, L. (2024). Physics-Informed neural network for level set method in vapor condensation. International Journal of Heat and Fluid Flow, 110, 109651.
Details
Primary Language
English
Subjects
Computational Methods in Fluid Flow, Heat and Mass Transfer (Incl. Computational Fluid Dynamics), Hydrodynamics and Hydraulic Engineering, Fluid Mechanics and Thermal Engineering (Other), Mechanical Engineering (Other)
Journal Section
Research Article
Publication Date
June 30, 2025
Submission Date
February 25, 2025
Acceptance Date
April 17, 2025
Published in Issue
Year 2025 Volume: 10 Number: 2
APA
Tan, F., & Tur, H. O. (2025). CFD Analysis of the Impact of Temperature Variation on Condensation and Phase Transition Performance in Heat Exchangers. Harran Üniversitesi Mühendislik Dergisi, 10(2), 80-93. https://doi.org/10.46578/humder.1646589
AMA
1.Tan F, Tur HO. CFD Analysis of the Impact of Temperature Variation on Condensation and Phase Transition Performance in Heat Exchangers. Harran Üniversitesi Mühendislik Dergisi. 2025;10(2):80-93. doi:10.46578/humder.1646589
Chicago
Tan, Fuat, and Hamid Orhun Tur. 2025. “CFD Analysis of the Impact of Temperature Variation on Condensation and Phase Transition Performance in Heat Exchangers”. Harran Üniversitesi Mühendislik Dergisi 10 (2): 80-93. https://doi.org/10.46578/humder.1646589.
EndNote
Tan F, Tur HO (June 1, 2025) CFD Analysis of the Impact of Temperature Variation on Condensation and Phase Transition Performance in Heat Exchangers. Harran Üniversitesi Mühendislik Dergisi 10 2 80–93.
IEEE
[1]F. Tan and H. O. Tur, “CFD Analysis of the Impact of Temperature Variation on Condensation and Phase Transition Performance in Heat Exchangers”, Harran Üniversitesi Mühendislik Dergisi, vol. 10, no. 2, pp. 80–93, June 2025, doi: 10.46578/humder.1646589.
ISNAD
Tan, Fuat - Tur, Hamid Orhun. “CFD Analysis of the Impact of Temperature Variation on Condensation and Phase Transition Performance in Heat Exchangers”. Harran Üniversitesi Mühendislik Dergisi 10/2 (June 1, 2025): 80-93. https://doi.org/10.46578/humder.1646589.
JAMA
1.Tan F, Tur HO. CFD Analysis of the Impact of Temperature Variation on Condensation and Phase Transition Performance in Heat Exchangers. Harran Üniversitesi Mühendislik Dergisi. 2025;10:80–93.
MLA
Tan, Fuat, and Hamid Orhun Tur. “CFD Analysis of the Impact of Temperature Variation on Condensation and Phase Transition Performance in Heat Exchangers”. Harran Üniversitesi Mühendislik Dergisi, vol. 10, no. 2, June 2025, pp. 80-93, doi:10.46578/humder.1646589.
Vancouver
1.Fuat Tan, Hamid Orhun Tur. CFD Analysis of the Impact of Temperature Variation on Condensation and Phase Transition Performance in Heat Exchangers. Harran Üniversitesi Mühendislik Dergisi. 2025 Jun. 1;10(2):80-93. doi:10.46578/humder.1646589