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Application of the two-fluid model to prediction of sediment transport in turbulent open channel flow

机译:双流体模型在湍流开放通道流中预测泥沙输送的应用

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摘要

The two-fluid model (TFM) formulation was used to predict the liquid and sediment transport in an open channel flow for dilute concentrations. A low-Reynolds-number k-epsilon model was used to represent the turbulence in the liquid phase; it included the effect of the sediment particles on the turbulence field. The particle-wall interactions were implemented using the boundary condition of Johnson and Jackson (1987), which resulted in a finite value for the sediment velocity at the bottom wall. The values of the specularity coefficient and coefficient of restitution for the particle-wall collisions were specified. Overall, the TFM prediction for the liquid velocity, sediment concentration, and turbulent statistics agreed well with two different experimental test cases by Lyn (1987). A key parameter for determining the sediment phase transport was the granular temperature, the level of which was set by the value of the specularity coefficient at the wall. In the context of the TFM, the presence of the sediment particles was found to enhance the wall shear stress of the liquid phase.
机译:双流体模型(TFM)制剂用于预测液体和沉积物输送在稀浓度的开放通道流中。低雷诺数K-EPSILON模型用于表示液相中的湍流;它包括沉积物粒子对湍流场的影响。使用约翰逊和杰克逊(1987)的边界条件来实施粒子壁相互作用,这导致底壁的沉积物速度有限。指定了颗粒壁碰撞的镜面系数和恢复系数的值。总的来说,对液体速度,沉积物浓度和湍流统计的TFM预测与Lyn(1987)的两种不同的实验测试案相同。用于确定沉积物相传输的关键参数是颗粒温度,其水平由墙壁上的镜面系数的值设定。在TFM的背景下,发现沉积物颗粒的存在以增强液相的壁剪切应力。

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