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- W3043566143 abstract "Abstract In this research heat and mass transfer in a one-row heat exchanger under partially wet-surface condition is focused. The governing equations are derived by applying an energy balance on a repetitive fin of the heat exchanger two-dimensionally. The obtained equations are numerically solved by employing the finite difference approach. Due to importance of pattern and wetness percentage of fin area, fin efficiency and temperature distribution (gradient) are determined. Two patterns and three percentages of wetness are assumed. The first pattern is based on some randomly selected grids that is named scattered pattern, and the second one is based on intentionally selected grids that is named concentrated pattern. Both patterns are investigated for three percentages of wetness: 10%, 20%, and 50%, respectively. Obtained results show that an increase in the percentage of fin wetness area leads to a decrease in efficiency since the temperature gradient increases. This result occurs both in scatter and concentrated patterns. In this regard, fin percentage of wetness plays a significant role in fin efficiency. In concentrated patterns, the location of wetness on the fin surface is really significant to increase heat transfer. The concentrated pattern is more effective to increase heat transfer than a scattered pattern." @default.
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- W3043566143 date "2020-10-01" @default.
- W3043566143 modified "2023-10-14" @default.
- W3043566143 title "Effect of wetness pattern on the fin-tube heat exchanger performance under partially wet-surface condition" @default.
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- W3043566143 doi "https://doi.org/10.1016/j.tsep.2020.100619" @default.
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