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Pollutant Load Evaluation in Stormwater Systems

机译:雨水系统中的污染物负荷评估

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Stormwater runoff contains nonpoint pollution, and it is one of the main sources of water quality deterioration for receiving waters. Therefore, the control of nonpoint pollution should be considered to the same extent as the control of stormwater flooding in stormwater management. In order to control nonpoint pollution, structural best management practices (BMPs) are widely applied. Until now, however, many proposed models for BMP performance were not straight forward in their simulation of nonpoint-pollution removal because there are many uncertainties for nonpoint source pollutants removal in BMPs. The estimation and control of pollutant loading are very significant with respect to determining compliance with the Total Maximum Daily Load (TMDL) requirements. Thus, it is necessary to investigate how effective BMPs are at controlling pollutant loads in stormwater storage systems and which of their properties are the least and most effective in controlling the pollutant loads they treat. The objective of this study is to estimate the pollutant loading controlled and released to receiving water by BMPs using a BMP performance model. This BMP performance model will relate the BMP surface area and the imperviousness ratio of the study watershed to the effectiveness of two BMPs in removing watershed pollutants. The developed BMP performance model is applied in this study to detention basins and retention ponds; Total suspended solids (TSS) is chosen as the representative stormwater pollutant.
机译:雨水径流包含非点源污染,它是接收水导致水质恶化的主要来源之一。因此,在雨水管理中,应将面源污染的控制与雨水泛滥的控制同等考虑。为了控制面源污染,广泛应用了结构最佳管理规范(BMP)。但是,直到现在,许多提议的BMP性能模型在模拟非点源污染物去除方面还不是直截了当的,因为在BMP中非点源污染物去除存在很多不确定性。对于确定是否符合总最大日负荷(TMDL)要求,污染物负荷的估算和控制非常重要。因此,有必要研究BMP如何有效地控制雨水存储系统中的污染物负荷,以及它们的哪些特性在控制其处理的污染物负荷方面是最不有效的方法。这项研究的目的是使用BMP性能模型来估算BMP控制并释放到接收水中的污染物负荷。该BMP性能模型将把BMP表面积和研究分水岭的不透水率与两种BMP去除分水岭污染物的有效性联系起来。在这项研究中,将开发的BMP绩效模型应用于滞留池和滞留池。选择总悬浮固体(TSS)作为代表性的雨水污染物。

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