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Optimization of submerged depth of surface aerators for a carrousel oxidation ditch based on large eddy simulation with Smagorinsky model

机译:基于Smagorinsky模型大涡模拟的Carrousel氧化沟表面曝气机淹没深度优化。

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This paper is concerned with the simulation and experimental study of hydraulic characteristics in a pilot Carrousel oxidation ditch for the optimization of submerged depth ratio of surface aerators. The simulation was based on the large eddy simulation with the Smagorinsky model, and the velocity was monitored in the ditches with an acoustic Doppler velocimeter method. Comparisons of the simulated velocities and experimental ones show a good agreement, which validates that the accuracy of this simulation is good. The best submerged depth ratio of 2/3 for surface aerators was obtained according to the analysis of the flow field structure, the ratio of gas and liquid in the bottom layer of a ditch, the average velocity of mixture and the flow region with a velocity easily causing sludge deposition under the four operation conditions with submerged depth ratios of 1/3, 1/2, 2/3 and 3/4 for surface aerators. The research result can provide a reference for the design of Carrousel oxidation ditches.
机译:本文主要针对Carrousel氧化沟试验中水力特性的仿真和实验研究,以优化表面​​曝气器的淹没深度比。该模拟基于Smagorinsky模型的大型涡模拟,并使用声学多普勒测速仪方法在沟渠中监测速度。模拟速度与实验速度的比较显示出良好的一致性,这证明了该模拟的准确性。通过对流场结构,沟渠底层的气液比率,混合物的平均流速和流速随流速变化的区域的分析,得到了最佳的表面曝气机深水比2/3。在四个操作条件下,表面曝气机的浸入深度比分别为1 / 3、1 / 2、2 / 3和3/4时,很容易导致污泥沉积。研究结果可为Carrousel氧化沟的设计提供参考。

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