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一种用于描述二次沉淀的新沉降速度模型。

A new settling velocity model to describe secondary sedimentation.

机构信息

Department of Environmental Engineering, Technical University of Denmark, Miljøvej, Building 113, 2800 Kgs. Lyngby, Denmark.

DHI Water & Environment (S) Pte Ltd, Singapore 63714, Singapore.

出版信息

Water Res. 2014 Dec 1;66:447-458. doi: 10.1016/j.watres.2014.08.034. Epub 2014 Sep 3.

Abstract

Secondary settling tanks (SSTs) are the most hydraulically sensitive unit operations in biological wastewater treatment plants. The maximum permissible inflow to the plant depends on the efficiency of SSTs in separating and thickening the activated sludge. The flow conditions and solids distribution in SSTs can be predicted using computational fluid dynamics (CFD) tools. Despite extensive studies on the compression settling behaviour of activated sludge and the development of advanced settling velocity models for use in SST simulations, these models are not often used, due to the challenges associated with their calibration. In this study, we developed a new settling velocity model, including hindered, transient and compression settling, and showed that it can be calibrated to data from a simple, novel settling column experimental set-up using the Bayesian optimization method DREAM(ZS). In addition, correlations between the Herschel-Bulkley rheological model parameters and sludge concentration were identified with data from batch rheological experiments. A 2-D axisymmetric CFD model of a circular SST containing the new settling velocity and rheological model was validated with full-scale measurements. Finally, it was shown that the representation of compression settling in the CFD model can significantly influence the prediction of sludge distribution in the SSTs under dry- and wet-weather flow conditions.

摘要

二沉池是生物污水处理厂中最受水力影响的单元操作。工厂的最大允许进水流取决于二沉池在分离和浓缩活性污泥方面的效率。可以使用计算流体动力学 (CFD) 工具来预测二沉池中的流动条件和固体分布。尽管对活性污泥的压缩沉降行为进行了广泛的研究,并开发了用于二沉池模拟的先进沉降速度模型,但由于校准方面的挑战,这些模型并不常用。在这项研究中,我们开发了一种新的沉降速度模型,包括干扰、瞬态和压缩沉降,并表明可以使用贝叶斯优化方法 DREAM(ZS) 对来自简单新颖沉降柱实验装置的数据进行校准。此外,还通过批量流变实验数据确定了赫谢尔- Bulkley 流变模型参数与污泥浓度之间的相关性。带有新沉降速度和流变模型的圆形二沉池的 2-D 轴对称 CFD 模型使用全尺寸测量进行了验证。最后,结果表明,CFD 模型中对压缩沉降的表示可以显著影响干湿条件下二沉池中污泥分布的预测。

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