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CFD for wastewater treatment: an overview

机译:CFD用于废水处理:概述

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Computational fluid dynamics (CFD) is a rapidly emerging field in wastewater treatment (WWT), with application to almost all unit processes. This paper provides an overview of CFD applied to a wide range of unit processes in water and WWT from hydraulic elements like flow splitting to physical, chemical and biological processes like suspended growth nutrient removal and anaerobic digestion. The paper's focus is on articulating the state of practice and research and development needs. The level of CFD's capability varies between different process units, with a high frequency of application in the areas of final sedimentation, activated sludge basin modelling and disinfection, and greater needs in primary sedimentation and anaerobic digestion. While approaches are comprehensive, generally capable of incorporating non-Newtonian fluids, multiphase systems and biokinetics, they are not broad, and further work should be done to address the diversity of process designs. Many units have not been addressed to date. Further needs are identified throughout, but common requirements include improved particle aggregation and breakup (flocculation), and improved coupling of biology and hydraulics.
机译:计算流体力学(CFD)是废水处理(WWT)中一个迅速兴起的领域,几乎应用于所有单元过程。本文概述了CFD在水和废水处理中广泛应用的过程,从水力元件(如分流)到物理,化学和生物过程(如悬浮生长的养分去除和厌氧消化)。本文的重点是阐明实践的状态以及研发需求。 CFD的能力水平在不同的工艺单元之间有所不同,在最终沉淀,活性污泥池建模和消毒领域的应用频率很高,并且对初次沉淀和厌氧消化的需求也越来越大。尽管方法是全面的,通常能够合并非牛顿流体,多相系统和生物动力学,但是它们并不广泛,应该做进一步的工作来解决工艺设计的多样性。迄今为止,许多单位尚未解决。整个过程都确定了进一步的需求,但共同的需求包括改进的颗粒聚集和分解(絮凝),以及改进的生物学和水力学耦合。

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