Flow Boiling in Horizontal and Vertical Tubes:The Effect of Tube Orientation on Heat Transfer

N. Kattan, J. Thome, D. Favrat
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引用次数: 1

Abstract

As part of a comprehensive study on factors affecting flow boiling in horizontal tubes, local boiling heat transfer coefficients were measured for R- 134a evaporating inside the same 12.00 mm bore, plain tube for horizontal flow, vertical upflow and vertical downflow over a wide range of mass velocities, vapor qualities and heat flux for a direct comparison of the effects on tube orientation on heat transfer. The experiments show a significant effect of flow direction on local heat transfer coefficients with upflow giving significantly lower values and downflow yielding even lower values. A flashing/subcooling effect on the heat transfer process caused by the negative/positive pressure gradient for upflow/downflow, respectively, is proposed as an important new factor affecting flow boiling.
水平和垂直管道中的流动沸腾:管道方向对传热的影响
作为对水平管内流动沸腾影响因素的综合研究的一部分,测量了R- 134a在相同的12.00 mm口径内蒸发的局部沸腾传热系数,平管进行水平流动,垂直向上流动和垂直向下流动,在很大范围内的质量速度,蒸汽质量和热流,直接比较管的方向对传热的影响。实验表明,流动方向对局部换热系数有显著影响,向上流动的数值显著降低,向下流动的数值更低。本文提出了一种新的影响流动沸腾的重要因素,即由上下流的负/正压力梯度分别引起的闪蒸/过冷效应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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