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Prediction of gas volume fraction in fully-developed gas-liquid flow in a vertical pipe

机译:垂直管中全发达的气液流动中气体体积分数的预测

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An Eulerian-Eulerian two-fluid model has been implemented for the prediction of the gas volume fraction profile in turbulent upward gas-liquid flow in a vertical pipe. The two-fluid transport equations are discretized using the finite volume method and a low Reynolds number k-e turbulence model is used to predict the turbulence field for the liquid phase. The contribution to the effective turbulence by the gas phase is modeled by a bubble induced turbulent viscosity. For the fully-developed flow being considered, the gas volume fraction profile is calculated using the radial momentum balance for the bubble phase. The model potentially includes the effect of bubble size on the interphase forces and turbulence model. The results obtained are in good agreement with experimental data from the literature. The one-dimensional formulation being developed allows for the efficient assessment and further development of both turbulence and two-fluid models for multiphase flow applications in the nuclear industry.
机译:已经实现了欧拉欧拉·两种流体模型,用于预测垂直管中的湍流向上气液流动中的气体体积分数曲线。使用有限体积法离散化两种流体传输方程,并且使用低雷诺数K-E湍流模型来预测液相的湍流场。通过气相对有效湍流的贡献是由气泡诱导的湍流粘度建模的。对于所考虑的完全开发的流动,使用泡沫相的径向动量平衡来计算气体体积分数曲线。该模型可能包括气泡尺寸对差值和湍流模型的影响。获得的结果与文献中的实验数据吻合良好。开发的一维配方允许有效的评估和进一步发展核工业中多相流动应用的湍流和两种流体模型。

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