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Examining the effect of length/width ratio on the hydro-dynamic behaviour in a DAF system using CFD and ADV techniques

机译:使用CFD和ADV技术检查长宽比对DAF系统中水动力行为的影响

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Dissolved air flotation (DAF) is a solid-liquid separation system that uses fine bubbles rising from the bottom to remove particles in water. In this study, we investigated the effect of L/W(L; length, W; width) on the hydrodynamic behavior in a DAF system using CFD (computational fluid dynamics) and ADV (acoustic Doppler velocimetry) technique. The factual full-scale DAF system, L/W ratio of 1:1, was selected and various L/W ratio conditions (2:1, 3:1, 4:1 and 5:1) were simulated with CFD. For modelling, 2-phase (gas-liquid) flow equations for the conservation of mass, momentum and turbulence quantities were solved using a Eulerian-Eulerian approach based on the assumption that a very small particle is applied in the DAF system. Also, for verification of CFD simulation results, we measured the actual velocity at some points in the full-scale DAF system with the ADV technique. Both the simulation and the measurement results were in good accordance with each other. We concluded that the L/W ratio and outlet geometry play an important role for flow pattern and fine bubble distribution in the flotation zone. In the ratio of 1:1, the dead zone is less than those in other Gases. On the other hand, in the ratio of 5:1, the fine bubbles were more evenly distributed.
机译:溶解气浮法(DAF)是一种固液分离系统,它使用从底部升起的细小气泡去除水中的颗粒。在这项研究中,我们使用CFD(计算流体动力学)和ADV(声学多普勒测速)技术研究了L / W(L;长度,W;宽度)对DAF系统中水动力行为的影响。选择实际的全尺寸DAF系统,L / W比为1:1,并使用CFD模拟各种L / W比条件(2:1、3:1、4:1和5:1)。为了建模,在假设DAF系统中应用了非常小的颗粒的前提下,使用欧拉-欧拉方法求解了用于守恒质量,动量和湍流量的两相(气-液)流动方程。同样,为了验证CFD仿真结果,我们使用ADV技术在满量程DAF系统中的某些点上测量了实际速度。模拟结果与测量结果均吻合良好。我们得出的结论是,L / W比和出口几何形状对浮选区的流动模式和细小气泡分布起着重要作用。以1:1的比例,死区小于其他气体中的死区。另一方面,细气泡以5∶1的比例更均匀地分布。

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