Modeling of air-side heat transfer and pressure drop of straight fin-tube no-frost evaporators for a household refrigerator
Author:
Publisher
Springer Science and Business Media LLC
Subject
Mechanical Engineering,Mechanics of Materials
Link
http://link.springer.com/content/pdf/10.1007/s12206-020-1034-2.pdf
Reference37 articles.
1. A. R. El-Sayed, M. El Morsi and N. A. Mahmoud, A review of the potential replacements of HCFC, HFCs using environment-friendly refrigerants, Int. J. Air-Cond. Ref., 26 (2018) 1830002.
2. J. H. Jeong, S. G. Park, D. Sarker and K. S. Chang, Numerical simulation of the effects of a suction line heat exchanger on vapor compression refrigeration cycle performance, Journal of Mechanical Science and Technology, 26(4) (2012) 213–1226.
3. A. Sellami, E. Aridhi, D. Mzoughi and A. Mami, Performance of the bond graph approach for the detection and localization of faults of a refrigerator compartment containing an ice quantity, Int. J. Air-Cond. Ref., 26 (2018) 1850028.
4. A. M. Jacobi and R. K. Shah, Air-side flow and heat transfer in compact heat exchangers: a discussion of enhancement mechanisms, Heat Transfer Engineering, 19 (1988) 1–13.
5. N. Chimres and S. Wongwises, A critical review of the prominent method of heat transfer enhancement for the fin-and-tube heat exchanger by interrupted fin surface. The vortex generators approach, Int. J. Air-Cond. Ref., 26 (2018) 1830001.
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