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Pressure drop studies on two-phase flow in a uniformly heated vertical tube at pressures up to the critical point

机译:在压力达到临界点的均匀加热垂直管中两相流的压降研究

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摘要

Measurements of two-phase flow pressure drop have been made during a phase-change heat transfer process with refrigerant (R-134a) as a working fluid for a wide range of pressures right up to the critical pressure. The experiments were conducted in a uniformly heated vertical tube of 12.7 mm internal diameter and 3 m length over a heat flux range of 35-80 kW/m~2, mass flux range of 1200-2000 kg/m~2 s, exit quality range of 0.19-0.81 and for reduced pressures ranging from 0.24 to 1 with a fixed inlet subcooling of 3℃. The measurements were compared with the predictions from the homogeneous flow model, a separated flow model using correlations drawn from the literature for void fraction and frictional pressure drop, and finally, using a flow pattern-based predictive method accounting specifically for bubbly, slug and annular flow regimes. It was found that the best results were obtained with the flow pattern-based approach with a mean deviation of ± 20% over the entire pressure range.
机译:在相变传热过程中,使用制冷剂(R-134a)作为工作流体,测量了两相流压降,测量压力高达临界压力。实验在内径为12.7 mm,长度为3 m的均匀加热的垂直管中进行,热通量范围为35-80 kW / m〜2,质量通量范围为1200-2000 kg / m〜2 s,出口质量压力范围为0.19-0.81,减压范围为0.24到1,进口固定过冷度为3℃。将测量结果与均相流动模型的预测结果进行比较,均质流动模型使用从文献中得出的孔隙率和摩擦压降相关性,建立独立的流动模型,最后,使用基于流动模式的预测方法,专门针对气泡,弹丸和环形流态。发现使用基于流型的方法可获得最佳结果,在整个压力范围内的平均偏差为±20%。

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