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Concentration-driven models revisited: towards a unified framework to model settling tanks in water resource recovery facilities

机译:Replation驱动的模型重新审视:朝向统一的框架,以模拟水资源回收设施中的稳定坦克

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A new perspective on the modelling of settling behaviour in water resource recovery facilities is introduced. The ultimate goal is to describe in a unified way the processes taking place both in primary settling tanks (PSTs) and secondary settling tanks (SSTs) for a more detailed operation and control. First, experimental evidence is provided, pointing out distributed particle properties (such as size, shape, density, porosity, and flocculation state) as an important common source of distributed settling behaviour in different settling unit processes and throughout different settling regimes (discrete, hindered and compression settling). Subsequently, a unified model framework that considers several particle classes is proposed in order to describe distributions in settling behaviour as well as the effect of variations in particle properties on the settling process. The result is a set of partial differential equations (PDEs) that are valid from dilute concentrations, where they correspond to discrete settling, to concentrated suspensions, where they correspond to compression settling. Consequently, these PDEs model both PSTs and SSTs.
机译:介绍了新的水资源回收设施中稳定行为建模的新观点。最终目标是以统一的方式描述主要沉降罐(PSTS)和次级沉降罐(SST)的过程进行更详细的操作和控制。首先,提供实验证据,将分布式颗粒性质(例如尺寸,形状,密度,孔隙率和絮凝状态)指向不同沉降装置过程中分布式沉降行为的重要常见源,以及在不同的沉降方案中(离散,阻碍和压缩稳定)。随后,提出了一种考虑若干粒子类的统一模型框架,以描述沉降行为中的分布以及颗粒性能对沉降过程的影响。结果是一组部分微分方程(PDE),其是非稀浓度的,在那里它们对应于离散沉降,浓缩悬浮液,在那里它们对应于压缩沉降。因此,这些PDE模拟PSTS和SST。

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