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首页> 外文期刊>Chemical engineering journal >Transient elution of particulate matter from hydrodynamic unit operations as a function of computational parameters and runoff hydrograph unsteadiness
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Transient elution of particulate matter from hydrodynamic unit operations as a function of computational parameters and runoff hydrograph unsteadiness

机译:流体动力学单元运行过程中颗粒物的瞬时洗脱与计算参数和径流水文图不稳定的关系

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摘要

While computational fluid dynamics (CFD) is utilized to simulate particulate matter (PM) separation and particle size distributions (PSDs) from unit operations, the role of computational parameters and runoff hydrograph unsteadiness to simulate intra-event elution of PM has not been examined. An Euler-Lagrangian CFD model is utilized to simulate discrete (Type 1) separation of PM by a common hydrodynamic unit operation subject to unsteady runoff events and a hetero-disperse PM gradation. Utilizing a baffled hydrodynamic separator (HS) this study illustrates the potential of a CFD model to predict PM elution as a function of runoff hydrograph unsteadiness. The study hypothesizes that accurate simulation of unit behavior as a function of unsteadiness is dependent on mesh size (MS), time step (TS) and PSD discretization number (DN). Full-scale physical model and CFD results are compared. Intra-event results demonstrate that MS, TS and DN parameters significantly influence prediction of transient PM elution, PSDs and computational effort. Results demonstrate that each parameter generates error for transient PM elution as influenced by the unsteadiness level. In contrast, TS, MS and DN selection each have a statistically significantly smaller influence on event-based PM mass balances and PSDs.
机译:尽管利用计算流体动力学(CFD)来模拟单位操作中的颗粒物(PM)分离和粒径分布(PSDs),但尚未检查计算参数和径流水线图不稳定来模拟事件内PM洗脱的作用。利用Euler-Lagrangian CFD模型来模拟由常见的水动力单元操作(受不稳定的径流事件和不均匀的PM分级影响)的PM的离散(类型1)分离。利用折流板式水力分离器(HS),本研究说明了CFD模型预测PM溶出与径流水位图不稳定性的函数的潜力。该研究假设,作为不稳定因素的函数的单元行为的准确模拟取决于网格尺寸(MS),时间步长(TS)和PSD离散数(DN)。比较了全尺寸物理模型和CFD结果。事件内结果表明,MS,TS和DN参数显着影响瞬时PM洗脱,PSD和计算量的预测。结果表明,每个参数都会由于不稳定程度的影响而导致瞬时PM洗脱产生误差。相反,TS,MS和DN的选择对基于事件的PM质量平衡和PSD的影响在统计学上显着较小。

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