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首页> 外文期刊>International Journal of Multiphase Flow >Reynolds-Averaged Two-Fluid Model prediction of moderately dilute fluid-particle flow over a backward-facing step
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Reynolds-Averaged Two-Fluid Model prediction of moderately dilute fluid-particle flow over a backward-facing step

机译:reynolds - 平均两种流体模型预测在后面的步骤中适度稀释的流体颗粒流动

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摘要

In this work a Reynolds-Averaged Two-Fluid fully coupled model (RA-TFM) for modelling of turbulent fluid-particle flow is implemented in OpenFOAM and applied to a vertically orientated backward-facing step. Three particle classes with varying mass loadings (10–40%) and different Stokes number are investigated. Details of the implementation and solution procedure are provided with special attention given to challenging terms. The prediction of mean flow statistics are in good agreement with the data from literature and show a distinct improvement over current model predictions. This improvement was due to the separation of the particle turbulent kinetic energykp, and the granular temperatureΘp, in which the large scale correlated motion and small scale uncorrelated motion are governed by separate transport equations. For each case simulated in this work, turbulence attenuation was accurately predicted, a finding that is attributed to separate coupling terms in both transport equations ofkpand εp.
机译:在这项工作中,用于建模的雷诺平均两种流体完全耦合模型(RA-TFM)在OpenFoam中实施,并施加到垂直定向的背面的步骤。调查了具有不同大容量载荷(10-40%)和不同斯托克斯数的三种颗粒类。实施和解决方案程序的详细信息具有特别关注挑战性术语。对来自文献的数据吻合的预测与文献中的数据吻合良好,并显示出对当前模型预测的明显改善。这种改进是由于粒子湍流动能kp的分离,以及粒度温度θp,其中大规模相关运动和小规模不相关运动由单独的传输方程控制。对于在该工作中模拟的每种情况下,精确预测湍流衰减,该发现归因于在kpandεp的两个传输方程中的单独耦合术语。

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