Faculty of Mechanical Engineering, University of Maribor, Slovenia.
Water Res. 2011 Feb;45(4):1729-35. doi: 10.1016/j.watres.2010.11.019. Epub 2010 Nov 20.
The paper studies the properties and sedimentation characteristics of sludge flocs, as they appear in biological wastewater treatment (BWT) plants. The flocs are described as porous and permeable bodies, with their properties defined based on conducted experimental study. The derivation is based on established geometrical properties, high-speed camera data on settling velocities and non-linear numerical model, linking settling velocity with physical properties of porous flocs. The numerical model for derivation is based on generalized Stokes model, with permeability of the floc described by the Brinkman model. As a result, correlation for flocs porosity is obtained as a function of floc diameter. This data is used in establishing a CFD numerical model of sedimentation of flocs in test conditions, as recorded during experimental investigation. The CFD model is based on Euler-Lagrange formulation, where the Lagrange formulation is chosen for computation of flocs trajectories during sedimentation. The results of numerical simulations are compared with experimental results and very good agreement is observed.
本文研究了生物废水处理 (BWT) 厂中出现的污泥絮体的特性和沉降特性。絮体被描述为多孔和可渗透的物体,其特性是根据进行的实验研究来定义的。推导基于已建立的几何特性、沉降速度的高速摄像机数据和将沉降速度与多孔絮体物理特性联系起来的非线性数值模型。推导的数值模型基于广义 Stokes 模型,其中絮体的渗透性由 Brinkman 模型描述。因此,得到了絮体孔隙率作为絮体直径的函数的相关关系。该数据用于在实验研究中记录的测试条件下建立絮体沉降的 CFD 数值模型。CFD 模型基于 Euler-Lagrange 公式,其中选择 Lagrange 公式来计算沉降过程中絮体的轨迹。数值模拟的结果与实验结果进行了比较,观察到非常好的一致性。