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推流式曝气池中曝气产生气泡微观行为的计算研究

Computational study on microscale behavior of bubble generated by aeration in a plug-flow aeration tank.

作者信息

Wang Huanran, Li Yanpeng, Zhao Zhixin

机构信息

School of Energy and Power Engineering, Xi'an Jiaotong University, Xi'an 710049, China.

出版信息

Water Sci Technol. 2009;59(10):2065-72. doi: 10.2166/wst.2009.199.

Abstract

The microscale hydrodynamics of bubbles generated by aeration is directly related to the oxygen transfer efficiency and the overall performance of the activated sludge wastewater treatment process. To gain a deeper insight on the microscale phenomena of dispersed bubble occurring in this process, a three-dimensional direct simulation method is developed to study the effects of the liquid cross-flow on microscale behavior of bubble generation 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 technique. The simulation results are validated through comparison with experimental observations. The study indicates that the liquid cross-flow has a strong impact on the bubble generation. Compared to that generated under quiescent liquid conditions, the bubble under liquid cross-flow conditions grows downstream along the tilted axis. The bubble generation time tends to decrease noticeably and the bubble at detachment has significantly smaller size. The bubble size and generation time also increase with the increase of gas velocity. The relation of such results to the oxygen transfer efficiency of the wastewater treatment process is also discussed.

摘要

曝气产生的气泡的微观尺度流体动力学与氧传递效率以及活性污泥废水处理过程的整体性能直接相关。为了更深入地了解该过程中分散气泡的微观尺度现象,开发了一种三维直接模拟方法,以研究液体错流对推流式曝气池中气泡生成微观行为的影响。使用水平集方法与具有可变性质的单一流体的控制方程相结合进行数值模拟。控制方程采用有限体积技术求解。通过与实验观测结果比较对模拟结果进行验证。研究表明,液体错流对气泡生成有强烈影响。与在静止液体条件下产生的气泡相比,液体错流条件下的气泡沿倾斜轴向下游生长。气泡生成时间往往明显减少,脱离时的气泡尺寸明显更小。气泡尺寸和生成时间也随着气体流速的增加而增加。还讨论了这些结果与废水处理过程氧传递效率的关系。

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