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- W203943730 abstract "One of the most effective techniques for augmenting in-tube evaporation heat transfer in refrigeration and air conditioning systems is to use internally finned tubes. In this study, the effects of several geometrical parameters of micro-finned tubes were experimentally investigated for single-phase and evaporation heat transfer. Specifically, the geometrical parameters studied were peak shape, valley shape, fin height, number of fins, and spiral angle. Commercial refrigeration and air-conditioning tubes with 3/8 in (9.52 mm) od were tested using refrigerant R-113 in a 39 in (1.0 m) long test section. The mass velocity range was varied from 145,000 1bm/hr . ft/sup 2/ (197 kg/s . m/sup 2/) to 440,000 1bm/hr . ft/sup 2/ (594 kg/s . m/sup 2/) while the average quality over the test section varied from 015 to 0.85. The system pressure was maintained at about 35 psi (241 kPa)." @default.
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- W203943730 date "1986-01-01" @default.
- W203943730 modified "2023-09-28" @default.
- W203943730 title "Augmentation of R-113 in-tube evaporation with micro-fin tubes" @default.
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