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The development of a novel approach for assessment of the first flush in urban stormwater discharges

机译:评估城市雨水首次冲刷的新方法的发展

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The management of stormwater pollution has placed particular emphasis on the first flush phenomenon. However, definition and current methods of analyses of the phenomena contain serious limitations, the most important being their inability to capture a possible impact of the event size (total event volume) on the first flush. This paper presents the development of a novel approach in defining and assessing the first flush that should overcome these problems. The phenomenon is present in a catchment if the decrease in pollution concentration with the absolute cumulative volume of runoff from the catchment is statistically significant. Using data from seven diverse catchments around Melbourne, Australia, changes in pollutant concentrations for Total Suspended Solids (TSS) and Total Nitrogen (TN) were calculated over the absolute cumulative runoff and aggregated from a collection of different storm events. Due to the discrete nature of the water quality data, each concentration was calculated as a flow-weighted average at 2mm runoff volume increments. The aggregated concentrations recorded in each increment (termed as a 'slice' of runoff) were statistically compared to each other across the absolute cumulative runoff volume. A first flush is then defined as the volume at which concentrations reach the 'background concentration' (i.e. the statistically significant minimum). Initial results clearly highlight first flush and background concentrations in all but one catchment supporting the validity of this new approach. Future work will need to address factors, which will help assess the first flush's magnitude and volume. Sensitivity testing and correlation with catchment characteristics should also be undertaken.
机译:雨水污染的管理特别重视第一次冲洗现象。但是,现象的定义和当前分析方法存在严重局限性,最重要的是它们无法捕获事件大小(总事件量)对第一次冲洗的可能影响。本文介绍了一种定义和评估应克服这些问题的首次冲洗的新颖方法。如果污染浓度随流域径流的绝对累积量的减少在统计上显着,则该现象存在于流域。使用来自澳大利亚墨尔本附近七个集水区的数据,计算了绝对累积径流量中总悬浮固体(TSS)和总氮(TN)的污染物浓度变化,并从一系列不同的暴风雨事件中进行了汇总。由于水质数据的离散性,每个浓度都以流量加权平均值(以2mm径流量增加)计算。在绝对累积的径流总量中,将每个增量(称为径流的“切片”)中记录的聚集浓度进行统计比较。然后将第一冲洗量定义为浓度达到“背景浓度”(即统计上的显着最小值)时的体积。初步结果清楚地表明,除一个流域外,所有区域的首次冲刷和背景浓度都证明了这种新方法的有效性。未来的工作将需要解决因素,这将有助于评估第一次冲洗的量和量。还应进行敏感性测试以及与流域特征的相关性。

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