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Diphasic transfer of oxygen in vertical flow filters: A modelling approach

机译:垂直流过滤器中氧气的两相转移:一种建模方法

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Oxygen renewal, as a prominent phenomenon for aerobic bacterial activity, deeply impacts vertical flow constructed wetland (VFCW) treatment efficiency. The authors introduce a multiphase model able to simulate oxygen transfer in VFCWs. It is based on a two-phase flow module, and a transport module. The transport module is able to deal with convection/diffusion phenomena, inter-phase (air-water) mass exchange, and first-order kinetics. The first results displayed for the air phase allow us to draw the following ideas on the design of vertical filters. The ponding phenomenon is more efficient for oxygen renewal than non-ponding batch loading: it provides a higher value, sooner, and deeper in the filter. In non-colonised filters and for standard batch loading, oxygen convection in the air phase is predominant for oxygen renewal. The seepage front limits oxygen renewal through the bottom of the filter and leads to an insufficient oxygen concentration on the lowest part of the filter.
机译:氧的更新,作为有氧细菌活动的重要现象,对垂直流人工湿地(VFCW)的处理效率产生了深远的影响。作者介绍了一种能够模拟VFCW中氧气转移的多相模型。它基于两相流模块和运输模块。传输模块能够处理对流/扩散现象,相间(空气-水)质量交换和一阶动力学。空气阶段显示的第一个结果使我们可以对立式过滤器的设计得出以下想法。与无响应的批量装载相比,深水现象对于氧气更新更有效:它在过滤器中提供了更高的价值,更快,更深。在非殖民化的过滤器中,对于标准批量装载,在空气中氧气对流是换氧的主要方式。渗流前沿限制了通过过滤器底部的氧气更新,并导致过滤器最下部的氧气浓度不足。

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