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首页> 外文期刊>Numerical Heat Transfer, Part B. Fundamentals: An International Journal of Computation and Methodology >Modeling multiphase flows subjected to centrifugal acceleration with a mixture-averaged drift-flux algorithm
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Modeling multiphase flows subjected to centrifugal acceleration with a mixture-averaged drift-flux algorithm

机译:使用混合平均漂移磁通算法对离心加速度下的多相流建模

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摘要

A mixture-averaged multiphase flow model has been developed to predict local variations in individual phase concentrations arising from centrifugal accelerations in the fluid. This centrifugal acceleration can be caused by swirl or by flow streamline curvature. The model has been developed for turbulent, compressible, nonisothermal flows. Higher-order differencing was used to discretize the transport equations; however, the effect of differencing the particle acceleration model on model performance is shown. For a sample case, comparisons are made with results using a Eulerian/Eulerian two-phase model. Discrete phase mass fraction concentration profiles compare favorably between the modified, mixture-averaged model and a two-phase model.
机译:已经开发了混合平均多相流模型来预测由于流体中的离心加速度而引起的各个相浓度的局部变化。这种离心加速度可能是由涡流或流线弯曲引起的。该模型已针对湍流,可压缩的非等温流动开发。使用高阶微分来离散输运方程。但是,显示了区分粒子加速度模型对模型性能的影响。对于样本情况,使用欧拉/欧拉两阶段模型与结果进行比较。离散相质量分数浓度曲线在改进的混合平均模型和两相模型之间具有可比性。

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