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Numerical simulation of aeration bubble growth in a plug-flow aeration tankused in wastewater treatment

机译:废水处理中曝气曝气罐中曝气泡沫增长的数值模拟

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The micro-scale hydrodynamics of bubbles growth by aeration is related to the oxygen transfer efficiency and the overall performance of the activated sludge wastewater treatment process. To gain a deeper insight on the micro-scale phenomena of dispersed bubble in this process, a three-dimensional direct simulation method is developed to study the effects of the liquid cross-flow on micro-scale behavior of bubble growth in a plug-flow aeration tank. The numerical simulations are performed using the level set method coupling with the governing equations of a single fluid with variable properties. The governing equations are solved using the finite-volume projection technique. The simulation results are compared with the experimental observations and theoretical relations. The simulated results show that water cross-flow in plug-flow type aeration tank has a strong impact on the bubble growth process. Compared to that generated under quiescent water conditions used in mixing type aeration tank, the bubble under water cross-flow conditions grows downstream along the tilted axis, and the bubble generation time tends to decrease noticeably and the bubble at detachment has significantly smaller size. The dynamic characteristics of the bubble growth through two orifices are also numerically studied. The effect of water cross-flow on the bubbling synchronicity is finally discussed.
机译:通气气泡生长的微观流体动力学与氧气转移效率和活性污泥废水处理过程的总体性能有关。为了在该过程中深入了解分散气泡的微尺度现象,开发了一种三维直接仿真方法,以研究液体交叉流对泡流中泡沫生长的微尺度行为的影响曝气罐。使用电平集方法与具有可变性质的单个流体的控制方程耦合来执行数值模拟。使用有限卷投影技术解决了控制方程。将仿真结果与实验观察和理论关系进行比较。模拟结果表明,渗漏型曝气罐中的水交叉流动对泡沫生长过程具有强烈影响。与混合型曝气槽中使用的静止水条件下产生的相比,在水横流条件下的气泡沿着倾斜轴的下游生长,并且气泡生成时间趋于显着降低,并且脱离处的气泡具有明显较小的尺寸。通过两种孔的气泡生长的动态特性也在数值上进行了数量研究。最终讨论了水交叉流量对鼓泡同步性的影响。

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