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An analytical model of subcritical and critical vapor-liquid flow through a granular bed

机译:粒状床的亚临界和临界蒸汽流动的分析模型

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This paper presents a computational and experimental justification of a theoretical model for the two-phase vapor-liquid flow through a fixed bed of solid particles. The theoretical description is based on the equations of gas dynamics of the granular bed and the homogeneous model of a single-component two-phase flow, given the difference between the velocities of liquid and vapor phases. Relationships between the phase slip ratio and polytropic coefficient of isenthalpic expansion of vapor-liquid flow were obtained using the multiparameter nonlinear regression. We used the experimental data on the vapor-liquid flow with an inlet pressure, P_1, of 0.6-1.2 MPa and an inlet flow quality, x_1, of 0.016-0.178 through a H=50-355 mm bed consisting of steel spheres, 2 and 4 mm in diameter, d. An expression for the critical pressure ratio in the granular bed is proposed. The developed model makes it possible to predict the values of mass velocity of the mixture over the entire range of experimental data with an average error of 3%. Based on the model equations, we obtained expressions for dimensionless mass velocity depending on the pressure ratio that can be applied to two-phase flows through both granular beds and other porous media.
机译:本文介绍了通过固定颗粒的固定床的两相蒸汽液体流动的理论模型的计算和实验理由。鉴于液体和蒸汽相的速度之间的差异,理论描述基于粒状床的气体动力学和单组分两相流的均匀模型的方程。利用多游ameter非线性回归获得了蒸汽液体流动型蒸汽流动膨胀的相滑移比和多细胞系数之间的关系。我们使用了对汽液流的实验数据,入口压力P_1,0.6-1.2MPa的入口流量,X_1,0.016-0.178通过H = 50-355 mm,由钢球组成,2直径4毫米,d。提出了颗粒状床中临界压力比的表达。开发模型使得可以在整个实验数据范围内预测混合物的质量速度值,其平均误差为3%。基于模型方程,我们获得了无量纲质量速度的表达,这取决于通过粒状床和其他多孔介质可以应用于两相流的压力比。

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