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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Single- and two-phase numerical models of Dissolved Air Flotation: Comparison of 2D and 3D simulations
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Single- and two-phase numerical models of Dissolved Air Flotation: Comparison of 2D and 3D simulations

机译:溶解气浮的单相和两相数值模型:2D和3D模拟的比较

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摘要

In this work single- and two-phase flow numerical models of a pilot DAF (Dissolved Air Flotation) tank are presented. In the latter framework, the mixture in the tank consists of water and air bubbles. The motion of air bubbles is resolved within the Lagrangian frame of reference. Interaction between bubbles is neglected in the present model. To account for turbulence in the tank, the realizable k-e{open} model is selected as a compromise between a need to correctly resolve the flow and the computational cost of the calculations. To validate the numerical simulations the results are compared with experimental results of an independent research group. The paper discusses the choice between performing two (2D)- or three-dimensional (3D) simulations of a flotation process. Our simulations show that a 3D hydrodynamic model of the flow pattern can well reproduce the single-phase flow in the pilot tank. Despite the major changes in the flow pattern that occur when the second phase (air bubbles) is introduced, the validated single-phase model provides a useful tool in the process of setting up the two-phase model. We show in the paper that a 2D two-phase model cannot resolve successfully the flow in the contact zone, whereas major flow characteristics in the separation zone can, to some extent, be described by a 2D approach (e.g. the stratification of the flow). In addition, two-phase simulations demonstrate that a 3D model is sensitive to the distribution of air and water from the needle valves, which, in turn, influences the stability of the solution obtained.
机译:在这项工作中,介绍了先导DAF(溶解气浮)罐的单相和两相流数值模型。在后一种框架中,罐中的混合物由水和气泡组成。气泡的运动在拉格朗日基准框架内分解。在本模型中,气泡之间的相互作用被忽略。为了解决储罐中的湍流,选择了可实现的k-e {open}模型作为正确解析流量的需要与计算的计算成本之间的折衷方案。为了验证数值模拟,将结果与独立研究小组的实验结果进行比较。本文讨论了执行浮选过程的两个(2D)或三维(3D)模拟之间的选择。我们的模拟表明,流动模式的3D流体动力学模型可以很好地重现引燃罐中的单相流动。尽管引入第二相(气泡)时流型发生了重大变化,但经过验证的单相模型在建立两相模型的过程中提供了有用的工具。我们在论文中表明,二维两相模型无法成功解析接触区中的流动,而分离区中的主要流动特征可以在某种程度上通过二维方法来描述(例如,流动分层) 。此外,两阶段模拟表明3D模型对针阀中空气和水的分布很敏感,进而影响所获得溶液的稳定性。

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