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Flow field prediction in full-scale Carrousel oxidation ditch by using computational fluid dynamics.

机译:利用计算流体力学在全尺寸Carrousel氧化沟中进行流场预测。

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摘要

In order to optimize the flow field in a full-scale Carrousel oxidation ditch with many sets of disc aerators operating simultaneously, an experimentally validated numerical tool, based on computational fluid dynamics (CFD), was proposed. A full-scale, closed-loop bioreactor (Carrousel oxidation ditch) in Ping Dingshan Sewage Treatment Plant in Ping Dingshan City, a medium-sized city in Henan Province of China, was evaluated using CFD. Moving wall model was created to simulate many sets of disc aerators which created fluid motion in the ditch. The simulated results were acceptable compared with the experimental data and the following results were obtained: (1) a new method called moving wall model could simulate the flow field in Carrousel oxidation ditch with many sets of disc aerators operating simultaneously. The whole number of cells of grids decreased significantly, thus the calculation amount decreased, and (2) CFD modeling generally characterized the flow pattern in the full-scale tank. 3D simulation could be a good supplement for improving the hydrodynamic performance in oxidation ditch designs.
机译:为了优化具有多个同时运行的圆盘曝气机的全尺寸Carrousel氧化沟中的流场,提出了一种基于计算流体动力学(CFD)的经过实验验证的数值工具。使用CFD对位于中国河南省中型城市平顶山市平顶山污水处理厂的大型闭环生物反应器(Carrousel氧化沟)进行了评估。创建了移动壁模型,以模拟多组盘式曝气机,它们在沟渠中产生了流体运动。与实验数据相比,模拟结果是可以接受的,并得到以下结果:(1)一种称为移动壁模型的新方法可以模拟Carrousel氧化沟中的流场,其中多台圆盘曝气机同时运行。网格单元的总数显着减少,因此计算量减少了;(2)CFD建模通常表征了满量程水箱中的流型。 3D模拟可能是改善氧化沟设计中水动力性能的良好补充。

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