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Numerical Simulation of Turbulence-Induced Flocculation and Sedimentation in a Flocculant-Aided Sediment Retention Pond

机译:絮凝剂沉淀池中湍流引起的絮凝沉淀的数值模拟

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摘要

A model combining multi-dimensional discretized population balance equations with a computational fluid dynamics simulation (CFD-DPBE model) was developed and applied to simulate turbulent flocculation and sedimentation processes in sediment retention basins. Computation fluid dynamics and the discretized population balance equations were solved to generate steady state flow field data and simulate flocculation and sedimentation processes in a sequential manner. Up-to-date numerical algorithms, such as operator splitting and LeVeque flux-corrected upwind schemes, were applied to cope with the computational demands caused by complexity and nonlinearity of the population balance equations and the instability caused by advection-dominated transport. In a modeling and simulation study with a two-dimensional simplified pond system, applicability of the CFD-DPBE model was demonstrated by tracking mass balances and floc size evolutions and by examining particle/floc size and solid concentration distributions. Thus, the CFD-DPBE model may be used as a valuable simulation tool for natural and engineered flocculation and sedimentation systems as well as for flocculant-aided sediment retention ponds.
机译:建立了将多维离散种群平衡方程与计算流体动力学模拟相结合的模型(CFD-DPBE模型),并将其用于模拟沉积池中的湍流絮凝和沉积过程。解决了计算流体动力学问题和离散化的种群平衡方程,以生成稳态流场数据并按顺序模拟絮凝和沉降过程。应用了最新的数值算法,例如算子分裂和LeVeque通量校正的迎风方案,以应对由于人口平衡方程的复杂性和非线性以及对流主导的输运所引起的不稳定性所引起的计算需求。在使用二维简化池塘系统的建模和仿真研究中,通过跟踪质量平衡和絮凝物尺寸演变以及检查颗粒/絮凝物尺寸和固体浓度分布,证明了CFD-DPBE模型的适用性。因此,CFD-DPBE模型可用作天然和工程絮凝和沉淀系统以及絮凝剂辅助沉积池的有价值的模拟工具。

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