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One-dimensional drift-flux model and constitutive equations for relative motion between phases in various two-phase flow regimes

机译:不同两相流态下相间相对运动的一维漂移-通量模型和本构方程

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摘要

In view of the practical importance of the drift-flux model for two-phase flow analysis in general and in the analysis of nuclear-reactor transients and accidents in particular, the kinematic constitutive equation for the drift velocity has been studied for various two-phase flow regimes. The constitutive equations that specify the relative motion between phases in the drift-flux model has been derived by taking into account the interfacial geometry, the body-force field, the shear stresses, the interfacial momentum transfer and the wall friction, since these macroscopic effects govern the relative velocity between phases. A comparison of the models with existing experimental data shows a satisfactory agreement.
机译:鉴于漂移通量模型通常对于两相流分析特别是在核反应堆瞬变和事故分析中的实际重要性,已研究了各种两相漂移速度的运动本构方程。流态。由于这些宏观效应,通过考虑界面几何形状,体力场,剪切应力,界面动量传递和壁摩擦,得出了在漂移通量模型中指定相之间相对运动的本构方程。控制相之间的相对速度。模型与现有实验数据的比较显示出令人满意的一致性。

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