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CFD Simulation of Hydraulics of Dividing wall Sieve Trays

机译:划分墙面筛液水力仿真的CFD仿真

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A 3D two-phase flow computational fluid dynamics (CFD) model containing gas mal-distribution is developed in the Eulerian framework to predict the hydraulics of a dividing wall sieve tray. Variable and position dependent gas superficial velocity is used in the calculation. Using water-air system, simulations of flow patterns and hydraulics of a commercial- scale 1.2m diameter sieve tray are carried out using this model to testify its precision. Then, the same simulations of a dividing wall sieve tray with equal diameter are carried out. The results show that there are two backflow regions on a dividing wall tray, one is in the segmental area, and the other is in the region nearby junction of dividing wall and outlet weir. In the segmental area of trays with equal diameter, the area of backflow region of dividing wall trays is basically equal to that of conventional trays.
机译:在欧拉框架中开发了含有气体混合物的3D两相流量计算流体动力学(CFD)模型,以预测分隔壁筛托的液压。在计算中使用可变和位置依赖性气体表面速度。使用水空气系统,使用该模型进行商业级1.2M直径筛托的流量模式和液压的模拟,以证明其精度。然后,执行具有等直径的分割壁筛托盘的相同模拟。结果表明,分隔壁托盘上有两个回流区域,一个是在节段区域,另一个是在附近的分割墙壁和出口堰的区域附近的区域。在具有相同直径的托盘的节段区域中,分割壁托的回流区域的区域基本上等于传统托盘的区域。

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