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Simulation of flow field and sludge settling in a full-scale oxidation ditch by using a two-phase flow CFD model

机译:使用两相流CFD模型模拟全尺寸氧化沟中的流场和污泥沉降

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A two-phase (liquid-solid) computational fluid dynamics (CFD) model for simulating the flow field and sludge settling in a full-scale Carrousel oxidation ditch (OD) has been proposed. The Takács double exponential sedimentation velocity function was applied to simulate the two-phase flow. The flow field simulation results are comparable with the data obtained from the field. Compared to the single-phase simulation, the relative error between the simulation results and field data in this two-phase model is reduced from 8% to 5%. Based on the simulation results of the flow field and sludge settling by using this two-phase CFD model, an optimized operation scheme of the OD was proposed. Compared with the existing one, the volume fraction of solid phase at the bottom of the OD in the optimized operation scheme decreases from 0.260 to 0.258, which seems to be insignificant, but the distribution of sludge becomes more uniform.
机译:提出了两相(液固)计算流体动力学(CFD)模型,用于模拟全尺寸Carrousel氧化沟(OD)中的流场和污泥沉降。塔卡奇双指数沉降速度函数用于模拟两相流。流场模拟结果与从现场获得的数据相当。与单相模拟相比,该两相模型中模拟结果与现场数据之间的相对误差从8%降低到5%。基于该两阶段CFD模型的流场和污泥沉降模拟结果,提出了OD的优化运行方案。与现有方法相比,在优化操作方案中,OD底部固相的体积分数从0.260降低至0.258,这似乎微不足道,但污泥的分布变得更加均匀。

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