Thermoflow Research Group, Department of Mechanical and Aeronautical Engineering, University of Pretoria, Private Bag X20, Hatfield 0028, South Africa.
Water Res. 2013 Sep 1;47(13):4485-97. doi: 10.1016/j.watres.2013.05.011. Epub 2013 May 21.
A computational fluid dynamics (CFD) model that evaluates mechanical mixing in a full-scale anaerobic digester was developed to investigate the influence of sewage sludge rheology on the steady-state digester performance. Mechanical mixing is provided through an impeller located in a draft tube. Use is made of the Multiple Reference Frame model to incorporate the rotating impeller. The non-Newtonian sludge is modeled using the Hershel-Bulkley law because of the yield stress present in the fluid. Water is also used as modeling fluid to illustrate the significant non-Newtonian effects of sewage sludge on mixing patterns. The variation of the sewage sludge rheology as a result of the digestion process is considered to determine its influence on both the required impeller torque and digester mixing patterns. It was found that when modeling the fluid with the Hershel-Bulkley law, the high slope of the sewage stress-strain curve at high shear rates causes significant viscous torque on the impeller surface. Although the overall fluid shear stress property is reduced during digestion, this slope is increased with sludge age, causing an increase in impeller torque for digested sludge due to the high strain rates caused by the pumping impeller. Consideration should be given to using the Bingham law to deal with high strain rates. The overall mixing flow patterns of the digested sludge do however improve slightly.
开发了一个用于评估全尺寸厌氧消化器中机械混合的计算流体动力学 (CFD) 模型,以研究污水污泥流变学对稳态消化器性能的影响。机械混合通过位于导流管中的叶轮提供。使用多参考框架模型来包含旋转叶轮。由于流体中存在屈服应力,因此使用 Hershel-Bulkley 定律对非牛顿污泥进行建模。还使用水作为建模流体来说明污水污泥对混合模式的显著非牛顿影响。考虑消化过程中污水污泥流变学的变化,以确定其对所需叶轮扭矩和消化器混合模式的影响。结果发现,在用 Hershel-Bulkley 定律对流体进行建模时,高剪切速率下污水的高斜率会在叶轮表面产生很大的粘性扭矩。尽管在消化过程中整体流体剪切应力特性降低,但由于泵送叶轮引起的高应变速率,该斜率随污泥龄增加而增加,从而导致消化污泥的叶轮扭矩增加。应考虑使用宾汉定律来处理高应变速率。然而,消化污泥的整体混合流动模式确实略有改善。