Summary
Under active icing conditions, the heat transfer performance of the CPHE has a significant impact on the system’s efficiency and energy consumption. Using the enthalpy-porosity method for describing the solidification process of liquids, the simulation and analysis of the effects of different parameter changes on the CPHE heat transfer performance were conducted to clarify the effects of the changes in the intermediary side inlet water temperature, intermediate water flow rate, and cold water flow rate on the heat transfer process in the CPHE. According to our results, changing the intermediary inlet water temperature has a greater impact on the heat transfer process in the cold-water phase-change heat exchangers. For every decrease of 0.5 °C in the intermediary side inlet water temperature, the average heat transfer coefficient increases by approximately 50 W/m2-K. Changes in the intermediary water flow rate affect the cold water phase-change heat exchanger’s heat transfer process. By increasing the intermediary water flow rate, the average heat transfer coefficient of a cold water phase-change heat exchanger can be improved, but the growth decreases, and the maximum flow rate of the intermediary water should not exceed 0.5 m per second. A change in the cold water flow rate in the cold water phase-change heat exchanger’s heat transfer process has a small impact on the cold water flow rate, increasing by 0.02 m/s each, with the average heat transfer coefficient increasing by 20 W/m2-K.
Available documents
Format PDF
Pages: 18 p.
Available
Free
Details
- Original title: Heat Transfer Characteristics of Cold Water Phase-Change Heat Exchangers under Active Icing Conditions.
- Record ID : 30030592
- Languages: English
- Subject: Technology
- Source: Energies - vol. 15 - n. 19
- Publishers: MDPI
- Publication date: 2022/10
- DOI: http://dx.doi.org/10.3390/en15197392
Links
See other articles in this issue (13)
See the source
-
Numerical simulation of ice slurry patterns wit...
- Author(s) : HEFNY S., THOMAS C., HESSE U.
- Date : 2020/12/07
- Languages : English
- Source: 14th IIR-Gustav Lorentzen Conference on Natural Refrigerants (GL2020). Proceedings. Kyoto, Japon, December 7-9th 2020.
- Formats : PDF
View record
-
Applicability of numerical code for simulation ...
- Author(s) : HEFNY S., TANNERT T., HESSE U.
- Date : 2019/08/24
- Languages : English
- Source: Proceedings of the 25th IIR International Congress of Refrigeration: Montréal , Canada, August 24-30, 2019.
- Formats : PDF
View record
-
Numerical studies of the behaviour of isotherma...
- Author(s) : HEFNY S., THOMAS C., HESSE U.
- Date : 2021/09/01
- Languages : English
- Source: 13rd IIR Conference on Phase-Change Materials and Slurries for Refrigeration and Air Conditioning. Proceedings: (online) Vicenza, Italy, September 1-3, 2021.
- Formats : PDF
View record
-
Experimental characterisation and optimisation ...
- Author(s) : YEDMEL M. A., HOANG H. M., HUNLEDE R., FOURNAISON L., DELAHAYE A.
- Date : 2023/08/21
- Languages : English
- Source: Proceedings of the 26th IIR International Congress of Refrigeration: Paris , France, August 21-25, 2023.
- Formats : PDF
View record
-
Ice-slurry production in a tubular heat exchang...
- Author(s) : LE BAIL A., FAUCHEUX M., HAVET M.
- Date : 2010/09/01
- Languages : English
- Source: 9th Conference on Phase-Change Materials and Slurries for Refrigeration and Air Conditioning. Proceedings: Sofia, Bulgaria, September 29-October 1, 2010.
- Formats : PDF
View record