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首页> 外文期刊>Practice Periodical of Hazardous, Toxic, and Radioactive Waste Management >Attenuation of Pathogen Shock Load: Analytical Analysis of Infiltration Gallery in Riverbank Filtration during Stream Stage Rise
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Attenuation of Pathogen Shock Load: Analytical Analysis of Infiltration Gallery in Riverbank Filtration during Stream Stage Rise

机译:病原体冲击负荷的衰减:河段上升过程中河岸过滤入渗廊道的分析

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摘要

A risk assessment model was developed and combined with hydrogeological data to determine the permissible limit of fecal coliform in water during riverbank filtration (RBF). It combined an analytical solution of water flow and contaminant transport from a stream to an infiltration gallery. The model was developed to simulate stream stage rise conditions and monitor harmful pathogens during infiltration. The analytical element method (AEM) was used to measure the travel time of water toward the gallery for a given rise in stream stage under an unsteady state of flow condition. To study the contaminant concentration variation, pathogen transport considering dispersion and decay was analyzed. Pathogen transport in groundwater was simulated using a logistic function that integrates an AEM. To achieve the objective of an appropriate location of an infiltration gallery, the desired reduction of pathogen concentration was evaluated. The analysis for optimum distance with various trials of water travel time is also presented. This study examined the potential of RBF systems for an infiltration gallery considering its safe distance against pathogen shock load during the storm. However, further biogeochemical modeling is needed to predict the fate of contaminants during their transit to the infiltration gallery.
机译:建立了风险评估模型,并与水文地质数据相结合,以确定河岸过滤(RBF)期间水中粪便大肠菌的允许限量。它结合了水流和污染物从水流到渗透通道的分析解决方案。该模型的开发是为了模拟河流水位上升情况并监测渗透过程中的有害病原体。在流动状态不稳定的情况下,对于给定的水位上升阶段,使用分析元素法(AEM)来测量水流向通道的时间。为了研究污染物浓度的变化,分析了考虑到扩散和衰减的病原体运输。使用集成AEM的逻辑函数模拟了地下水中的病原体运输。为了达到适当定位浸润通道的目的,评估了所需的病原体浓度降低。还介绍了通过各种水上旅行时间进行的最佳距离分析。考虑到暴风雨期间RBF系统抵御病原体冲击负荷的安全距离,这项研究检查了RBF系统对于渗透廊的潜力。但是,还需要进一步的生物地球化学模型来预测污染物转移到渗透通道期间的命运。

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