Department of Civil and Environmental Engineering, University of California Los Angeles, Los Angeles, CA, USA.
Water Environ Res. 2020 Jun;92(6):796-820. doi: 10.1002/wer.1279. Epub 2019 Dec 19.
Secondary settling tanks (SSTs) are a crucial process that determines the performance of the activated sludge process. However, their performance is often far from satisfactory. In the last 30 years, computational fluid dynamics (CFD) has become a robust and cost-efficient tool for designing new SSTs, modifying the geometries of existing SSTs and improved control techniques in wastewater treatment plants. The first part of this review paper discusses the different approaches to model the motion of particles in SSTs. The applications of different multiphase approaches and the widely applied single-phase approach in different SST studies are reviewed. The second part reviews current CFD research and engineering practice, focusing on the formation and the effect of density currents, effects of different design variables, parameter uncertainties in modeling structures, and atmospheric conditions. Finally, challenges and future improvements of sub-models (sludge settling, rheology, turbulence, and flocculation) in the SST model framework are identified. PRACTITIONER POINTS: The first journal review for the CFD applications in SSTs over the last decade. The controversy over the relationship between SOR and SST performance can be largely explained by the prediction of the CFD model. Density decoupling in the turbulence model is possible for well-baffled SSTs. The relative importance of three modeling parameters is summarized. Recommendations for future data collection are provided.
二沉池(SST)是决定活性污泥工艺性能的关键过程。然而,其性能往往远不能令人满意。在过去的 30 年中,计算流体动力学(CFD)已成为设计新型 SST、修改现有 SST 几何形状和改进污水处理厂控制技术的强大且经济高效的工具。本文回顾的第一部分讨论了模型中颗粒运动的不同方法。综述了不同多相方法的应用以及不同 SST 研究中广泛应用的单相方法。第二部分回顾了当前的 CFD 研究和工程实践,重点介绍了密度流的形成和影响、不同设计变量的影响、结构建模中的参数不确定性以及大气条件。最后,确定了 SST 模型框架中(污泥沉降、流变学、湍流和絮凝)子模型(污泥沉降、流变学、湍流和絮凝)的挑战和未来改进。
这是过去十年中 CFD 在 SST 中应用的首篇期刊综述。
可以用 CFD 模型很好地解释 SOR 与 SST 性能之间的关系。
在具有良好挡板的 SST 中,湍流模型中的密度解耦是可能的。
总结了三个建模参数的相对重要性。
为未来的数据收集提供了建议。