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April 16, 2026International Journal of Air-Conditioning and Refrigeration0 citationsOpen Access

Development of a cooling capacity correlation for aluminum tube evaporator to enhance refrigerator efficiency using R600a refrigerant

AIAsm Toufiq ImamMTMohammad TauhiduzzamanMHMd. Moeenul Haque

Key Points

  • The aim is to develop a correlation for cooling capacity related to aluminum tube evaporators in domestic refrigerators using R600a refrigerant.
  • Conducted analytical and experimental analyses of evaporator tube lengths
  • Calculated convective heat transfer coefficients under four correlations
  • Performed cooling capacity calculations based on volume and cooling capacity factors
  • Validated results through pull-down tests on different samples with varying dimensions
  • Optimized tube lengths exhibited significantly higher cooling capacity
  • Optimized samples showed earlier temperature convergence than non-optimized samples
  • Energy analysis indicated the optimized sample had the highest energy efficiency ratio
  • The lowest energy efficiency index was also recorded for the optimized sample

Abstract

Abstract This paper focuses on the cooling capacity analysis of aluminium tube evaporator for cooling compartments in domestic refrigerator. The study adapted a framework combining analytical and experimental analyses to investigate the influence of evaporator tube length on the cooling capacity of the freezer and refrigerator. Convective heat transfer co-efficient based on two-phase flow was calculated under four different correlations considering a domestic refrigerator of 246 L volume using R600a refrigerant. Cooling capacity was calculated based on the product of cooling capacity factor and cubic root of volume signifying the heat loss. The cooling capacity factor provides a concrete understanding of the variation in evaporator tube length as a function of different parameters such as thermal conductivity, thickness, temperature etc. An optimized evaporator tube length was considered for the freezer and refrigerator of 246 L domestic refrigerator bestowing uniform cooling capacity factor for four different correlations albeit convective heat transfer coefficient (HTC) varied significantly. To validate the optimized evaporator tube lengths, cooling capacity was examined through pull-down tests for two different commercially available samples of varying volumes and tube lengths for the freezer and refrigerator, as well as the optimized sample with the largest volume. A comparison of the cooling capacity of the two samples and the optimized sample showed that the optimized sample exhibited a higher cooling capacity and achieved temperature convergence earlier. Furthermore, the energy analysis conducted on all samples revealed that optimized sample attained the highest energy efficiency ratio (EER) and least Energy Efficiency Index (EEI).

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Cite This Study

Imam et al. (2026) studied this question.

synapsesocial.com/papers/69e07cfa2f7e8953b7cbe07dhttps://doi.org/10.1007/s44189-026-00104-7
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