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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Diphasic modelling of vertical flow filter
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Diphasic modelling of vertical flow filter

机译:立式滤池的两相建模

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摘要

Wastewater treatment quality in vertical flow filter fed intermittently depends on the oxygen renewal capacities. Convective transport by the air phase is one source. Diphasic modelling has been shown to be an efficient tool to describe complicated movement of air and water during a feeding sequence and thus to estimate the convective dioxygen income. However, earlier numerical works do not describe the full complexity of the system, like the seepage front existing at the interface with the drain, and are limited to one scenario. In this paper, we introduce an adaptation of an existing diphasic numerical model to the specificity of vertical flow filter with a particular emphasis on the choice of boundary and initial conditions. Completely different behaviour was observed as ponding does or does not occur. Taking into account the influence of air also enables us to understand a phenomenon like early seepage at the bottom due to air pushed downward and reduction of infiltration speed linked to air compression in the top layers. We investigate relationships between the feeding parameters and the quantity of dioxygen entering the porous media by convection. Hydraulic loading rate does not seem to affect the quantity of dioxygen entering by convection. Increase of the daily hydraulic augments the dioxygen income. However, this phenomenon seems limited as it tends towards an asymptotic value. The number of flushes per day has a contradictory impact: it reduces the income of dioxygen per flush but have a positive impact over a day. Finally we initiate a benchmark of simulation scenarios, which might be a basis for model comparison and experimental validation.
机译:间歇进料的立式滤池的废水处理质量取决于氧气的更新能力。空气对流运输是其中一种来源。已经证明,两相建模是描述进料过程中空气和水的复杂运动并因此估计对流双氧收入的有效工具。但是,较早的数值工作并未描述系统的全部复杂性,例如与排水管的界面处存在的渗流前沿,并且仅限于一种情况。在本文中,我们介绍了现有的两相数值模型对垂直流过滤器的适应性,特别强调边界和初始条件的选择。观察到是否发生了完全不同的行为。考虑到空气的影响,还使我们能够了解一种现象,例如由于空气向下推动而导致底部早期渗漏以及与顶层空气压缩相关的渗透速度降低。我们研究了进料参数和通过对流进入多孔介质的双氧量之间的关系。水力加载速率似乎并不影响通过对流进入的双氧量。每日水力的增加增加了双氧的收入。但是,这种现象似乎趋于渐近,因此似乎受到限制。每天的冲洗次数有矛盾的影响:它减少了每次冲洗产生的双氧,但在一天中却产生了积极的影响。最后,我们启动了模拟方案的基准,这可能是模型比较和实验验证的基础。

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