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首页> 外文期刊>American Water Works Association Journal >Rapid Analysis of Disinfection Efficiency Through Computational Fluid Dynamics
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Rapid Analysis of Disinfection Efficiency Through Computational Fluid Dynamics

机译:通过计算流体动力学快速分析消毒效率

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摘要

Disinfection technologies are widely used in the water and wastewater treatment industry. A rapid evaluation of disinfection efficiency before facility construction would help engineers improve facility designs and consequently bring economic benefits to the water or wastewater treatment plant. With rapid advances in computing technologies, computational fluid dynamics (CFD) has become affordable and popular. In this study, CFD (instead of physical experiments) was used to inform a reduced-order, segregated-flow model (SFM) of chemical reactions and inactivation, serving to provide a rapid evaluation of disinfection efficiency. The CFD-SFM model was validated with the use of physical experimental data (i.e., effluent ozone and bromate concentration) and log inactivation from a column contactor and a baffled contactor. The effluent chemical concentrations and microorganism inactivation predicted by the proposed hybrid modeling approach are consistent with the experimental data, thereby demonstrating that the hybrid CFD-SFM is viable for evaluating water disinfection efficiency.
机译:消毒技术广泛用于水和废水处理行业。在设施建设之前快速评估消毒效率将有助于工程师改善设施设计,从而为水或废水处理厂带来经济利益。随着计算技术的飞速发展,计算流体动力学(CFD)已变得负担得起且受欢迎。在这项研究中,CFD(而非物理实验)用于告知化学反应和失活的降序分流模型(SFM),以提供对消毒效率的快速评估。使用物理实验数据(即流出的臭氧和溴酸盐浓度)以及通过柱接触器和折流板接触器的对数灭活验证了CFD-SFM模型的有效性。提出的混合建模方法预测的废水化学浓度和微生物灭活与实验数据一致,从而证明了混合CFD-SFM对于评估水消毒效率是可行的。

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