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Critical quality prediction for saturated flow boiling of CO_2 in horizontal small diameter tubes

机译:水平小口径管中CO_2饱和沸腾沸腾的临界质量预测

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The dryout for flow boiling carbon dioxide (CO_2) in horizontal small diameter tubes is investigated through experiment and theoretical modeling. Tests are conducted in conditions where the saturation temperature is 0, 5, and 10℃, heat flux is 7.2-48.1 kW/m~2 and mass flux is 500-3000 kg/m~2 s. The dryout phenomena of CO_2 are similar with those of water in many respects, while the effects of mass flux on dryout show differences among them. The dryout of CO_2 is predicted by a theoretical dryout model, which is developed and verified with steam-water data. Two entrainment mechanisms of interface deformation and bubble bursting are considered in the model and dryout is determined when the liquid film thickness is less than the critical liquid film thickness, the criteria film thickness of dryout. The present model well predicts the experimental critical qualities except when mass flux is relatively high, at which the deposition of liquid droplet on the liquid film and the occurrence of dryout patches become very significant.
机译:通过实验和理论建模研究了水平小口径管中流动沸腾二氧化碳(CO_2)的变干情况。在饱和温度为0、5和10℃,热通量为7.2-48.1 kW / m〜2,质量通量为500-3000 kg / m〜2 s的条件下进行测试。 CO_2的甩干现象在很多方面与水相似,而质量通量对甩干的影响之间存在差异。通过理论上的干燥模型预测CO_2的干燥,并用蒸汽-水数据进行开发和验证。在模型中考虑了界面变形和气泡破裂的两种夹带机制,并且当液膜厚度小于临界液膜厚度(临界液膜厚度)时,确定了液膜干燥。本模型很好地预测了实验的关键质量,除非质量通量相对较高,否则液滴在液膜上的沉积和变干斑的发生变得非常重要。

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