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首页> 外文期刊>International Journal of Heat and Mass Transfer >Numerical and experimental investigation of pressure drop characteristics during upward boiling two-phase flow of nitrogen
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Numerical and experimental investigation of pressure drop characteristics during upward boiling two-phase flow of nitrogen

机译:氮气向上沸腾两​​相流压降特性的数值与实验研究

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摘要

The characteristics of overall pressure drop during upward boiling two-phase flow of nitrogen with constant mass flux and varying heat flux are experimentally investigated using a vertical tube with an inner diameter of 6.0 mm and numerically simulated using the two-fluid model with new closure correlations. Comparison of the numerical results against the experimental data shows that prior to the transition point in the curve of pressure drop evolution, the predicted pressure drop is in a satisfactory agreement with the experimental data. The present study demonstrates that both the wall lubrication force modeling and the bubble diameter modeling have significant effect on the pressure drop prediction. Both the theoretical analysis and the experimental evidence suggest that the transition point in the pressure drop evolution curve reflects the bubbly-to-slug flow regime transition.
机译:使用内径为6.0 mm的垂直管,对具有恒定质量通量和变化热通量的氮气向上沸腾两​​相流中的总压降特性进行了实验研究,并使用具有新的闭合关系的双流体模型进行了数值模拟。数值结果与实验数据的比较表明,在压降演变曲线的过渡点之前,预测的压降与实验数据令人满意。本研究表明,壁润滑力模型和气泡直径模型对压降预测均具有显着影响。理论分析和实验证据均表明,压降演化曲线中的转变点反映了气泡到团状流态的转变。

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