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Dynamic flow modelling in precipitator vessels - A study of turbulence modelling approaches

机译:除尘器容器中的动态流动建模-湍流建模方法研究

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Precipitation is a fundamental unit process within the Bayer circuit for the production of smelter-grade alumina, with the predominant technology used in this unit process being the mechanically-agitated draft-tube precipitator. Previous physical modelling studies have identified dynamic behaviour in these vessels which could potentially impact fluid residence time and the ability to obtain adequate solids suspension. In the current study the commercial CFD code ANSYS CFX14 is used to simulate the dynamic, single phase flow behaviour in a laboratory-scale replica of a full-scale precipitator. Simulations are conducted to investigate the impact of mesh refinement and turbulence model selection, with two-equation, Reynolds Stress and the Scale Adaptive Simulation (SST-SAS) models being investigated. The impact of the different modelling choices on the accuracy of the simulations is assessed through comparison of the CFD results with high-quality Laser Doppler Velocimetry (LDV) data obtained in a laboratory-scale vessel.
机译:沉淀是拜耳回路中用于生产冶炼级氧化铝的基本单元工艺,该单元工艺中使用的主要技术是机械搅拌的尾水管沉淀器。先前的物理模型研究已经确定了这些容器中的动态行为,这可能会影响流体的停留时间和获得足够的固体悬浮液的能力。在当前的研究中,商用CFD代码ANSYS CFX14用于模拟全规模除尘器在实验室规模副本中的动态单相流动行为。进行了仿真,以研究网格细化和湍流模型选择的影响,并研究了两个方程式,雷诺应力和尺度自适应仿真(SST-SAS)模型。通过将CFD结果与在实验室规模的容器中获得的高质量激光多普勒测速(LDV)数据进行比较,可以评估不同模型选择对模拟精度的影响。

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