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Titlebook: Single- and Two-Phase Flow Pressure Drop and Heat Transfer in Tubes; Afshin J. Ghajar Book 2022 The Editor(s) (if applicable) and The Auth

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楼主: TINGE
发表于 2025-3-28 17:54:06 | 显示全部楼层
Heat Transfer Results in Plain Tubes with Different Inlet Configurations buoyancy on heat transfer in different flow regimes is presented in this chapter. In addition, the variation of local Nusselt number along the tube in the laminar, transitional, and turbulent regions is discussed. In particular the unusual variation of local heat transfer coefficient in a circular tube with a bell-mouth inlet is highlighted.
发表于 2025-3-28 19:06:25 | 显示全部楼层
Friction Factor Results for Micro-fin Tubesrs in all flow regimes (laminar, transitional, and turbulent), the effect of inlet configuration (square-edged and re-entrant) on the start and end of transition of the fully developed friction factor, and the effect of fin geometries (spiral angle, fin height-to-diameter ratio, and number of starts) on friction factors.
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Proposed Correlations for Laminar, Transition, and Turbulent Friction Factors in Micro-fin Tubes witrent inlet configurations (square-edged and re-entrant), and different fin geometries (spiral angle, fin height-to-diameter ratio, and number of starts). For the fully developed turbulent region, the correlation of Jensen and Vlakancic (Int J Heat Mass Transfer 42:1343–1351, 1999) was recommended.
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0941-5122 ns for different flow patterns and pipe orientations.Reviews.The book provides design engineers an elemental understanding of the variables that influence pressure drop and heat transfer in plain and micro-fin tubes to thermal systems using liquid single-phase flow in different industrial applicatio
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Friction Factor in the Transition Region of Mini- and Micro-tubesubes, effect of straight and bending inlets with different angles (90° and 180° bend) installed before the test tube on heat transfer in mini- and micro-tubes, and the critical diameter for the onset of mixed convection in macro- and mini-tubes in the laminar region.
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Single- and Two-Phase Flow Pressure Drop and Heat Transfer in Tubes
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