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Drift-flux model in a sub-channel of rod bundle geometry

机译:棒束几何子通道中的漂移通量模型

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In view of the practical interest of the drift-flux model for two-phase flow analysis, the distribution parameter and drift velocity constitutive equations have been obtained for subcooled boiling flow in a sub-channel of rod bundle geometry. The constitutive equation of the distribution parameter for sub-cooled boiling flow in a sub-channel is obtained from the bubble-layer thickness model. In this derivation an existing constitutive equation for subcooled boiling flow in a round pipe is modified by taking account of the difference in the flow channel geometry between the sub-channel and round pipe. The constitutive equation of the drift velocity is proposed based on an existing correlation and considering the rod wall and sub-channel geometry effects. The prediction accuracy of the newly developed correlations has been checked against experimental data in a 3 × 3 rod bundle sub-channel, obtaining better predicting errors than the existing correlations most used in literature.
机译:鉴于两相流分析的漂移通量模型的实际意义,已经获得了棒束几何形状的子通道中过冷沸腾流的分布参数和漂移速度本构方程。从气泡层厚度模型获得了子通道中过冷沸腾流量的分布参数的本构方程。在该推导中,通过考虑子通道和圆管之间的流动通道几何形状的差异,修改了圆管中过冷沸腾流的现有本构方程。基于现有的相关性并考虑杆壁和子通道的几何效应,提出了漂移速度的本构方程。已针对3×3棒束子通道中的实验数据检查了新开发的相关性的预测准确性,比文献中最常用的现有相关性获得了更好的预测误差。

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