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- W2160397346 abstract "In the first part of this article (Silva Lima and Thome 2012b), new experimental frictional pressure drop data in U-bends were presented and discussed. The experimental data were obtained for R410A and R134a at two saturation temperatures (5°C and 10°C [41°F and 50°F]) flowing at three mass fluxes (150, 300, and 500 kg s−1m−2 [110.6·103, 221.2·103, and 368.7·103 lb h−1 ft−2]) inside five different test sections with three different internal diameters (13.4, 10.7, and 7.8 mm [0.527, 0.421, and 0.307 in.]) and five different bend diameters (66.1, 54.8, 38.1, 31.7, and 24.8 mm [2.602, 2.157, 1.5, 1.248, and 0.976 in.]) in three different orientations (horizontal, vertical upflow, and vertical downflow) with vapor qualities ranging from 0.05 to 0.95. In this second part, first an update to the flow pattern based frictional pressure drop model for straight tubes of Moreno Quiben and Thome (2007a, 2007b) is proposed. Then, a new multi-orientation flow pattern based prediction method for frictional pressure drop..." @default.
- W2160397346 created "2016-06-24" @default.
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- W2160397346 date "2012-11-14" @default.
- W2160397346 modified "2023-10-03" @default.
- W2160397346 title "Two-phase frictional pressure drops in U-bends and contiguous straight tubes for different refrigerants, orientations, tube, and bend diameters: Part 1. Experimental results (RP-1444)" @default.
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- W2160397346 doi "https://doi.org/10.1080/10789669.2012.672363" @default.
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