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Transient two-phase flow of cryogenic fluid in a vertical transfer line during the cooldown process.

机译:在冷却过程中,低温流体在垂直传输管线中的瞬态两相流。

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The analytical and numerical modeling for prediction of the thermo-fluid parameters of the cooldown process of a vertical tube carrying cryogenic liquid are presented.; Formulation of the problem is based on the flow patterns observed in the experimental studies. In this model the flow field consists of four distinct regions of fully liquid, inverted annular film boiling, dispersed flow film boiling, and fully vapor. For the fully liquid and fully vapor regions, the one-dimensional form of the mass, momentum, and energy conservation equations are used. For the two-phase regions, the volume-averaged, one-dimensional two-fluid model conservation equations are applied. In addition, a one-dimensional energy equation is formulated to determine the tube wall history.; The numerical approximations are based on the finite difference technique. Calculation for inverted annular flow are based on a semi-implicit model while computations for the wall, fully liquid, and dispersed flow regions are performed explicitly. Comparison of calculated results with experimental data for water and liquid nitrogen are presented.
机译:提出了预测低温液体垂直管冷却过程中热流体参数的分析和数值模型。问题的提出是基于实验研究中观察到的流动模式。在该模型中,流场由完全液体,倒置环形膜沸腾,分散流膜沸腾和完全蒸气的四个不同区域组成。对于全液体和全蒸气区域,使用质量,动量和能量守恒方程的一维形式。对于两相区域,应用体积平均的一维两流体模型守恒方程。另外,建立一维能量方程式以确定管壁历史。数值近似基于有限差分技术。反向环形流动的计算基于半隐式模型,而壁,全液体和分散流动区域的计算则明确执行。给出了计算结果与水和液氮实验数据的比较。

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