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Two-phase flow modelling for oxygen renewal estimation in vertical flow filter: luxury or necessity?

机译:用于立式流量过滤器中氧气更新估算的两相流建模:豪华还是必要?

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摘要

Scientists and practitioners exhibit an increasing interest on effluent transfer and degradation modelling in Vertical Flow Sand Filters (VFSF) and Vertical Flow Constructed Wetland (VFCW). Modelling software used to this purpose is mainly monophasic: in the unsaturated zone, only water flow is taken into account and air phase influence is assumed to be negligible. In hydrology, many studies have point out the limitations of this assumption in order to quantify air phase movement but little has been done in the modelling of vertical flow filter. Despite its complexity, two-phase flow modelling allows to overcome these difficulties. In this work, we describe the complex air and water flows in the particular case of vertical flow filter fed intermittently using both numerical and experimental results. Complete different behaviour is observed depending on ponding occurs or not. If it does, flow is clearly influenced by air entrapment which is responsible of a reduction of the infiltration speed and of the drainage of a part of the water kept at the interface between the sand and the drainage layer. Finally, we study the dependency of oxygen income by convection on hydraulic load and compare numerical results with experimental results obtained on oxygen consumption.
机译:科学家和从业人员对垂直流沙滤池(VFSF)和垂直流人工湿地(VFCW)中的废水转移和降解模型表现出越来越浓厚的兴趣。用于此目的的建模软件主要是单相的:在非饱和区中,仅考虑水流,并且假定空气相的影响可以忽略。在水文学中,许多研究指出了这一假设的局限性,以便量化气相运动,但是在垂直流过滤器的建模中却做得很少。尽管其复杂性,两相流建模仍可以克服这些困难。在这项工作中,我们使用数值和实验结果来描述在间歇性进料的立式流量过滤器的特殊情况下复杂的空气和水流。根据是否发生积水,观察到完全不同的行为。如果这样的话,流动显然会受到空气夹带的影响,这会导致渗透速度的降低和一部分水在沙子和排水层之间的界面处的排水。最后,我们研究了通过对流获得的氧气收入对水力负荷的依赖性,并将数值结果与耗氧量的实验结果进行了比较。

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