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Modeling middle and final flush effects of urban runoff pollution in an urbanizing catchment

机译:模拟城市化流域中径流污染的中游和最终冲刷效应

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In current literature, the first flush effect of urban runoff pollution has been studied and reported extensively. However, the effects of middle and final flushes on pollutant flushing were not given much attention. In addition, few previous studies have discussed the suitability of the widely used exponential wash-off model for describing the middle or final flush processes. In this paper, the Shiyan River catchment, a typical rapidly urbanizing catchment in China, is chosen as a study area to analyze the effects of first, middle and final flushes based on monitoring hydrographs and pollutographs. In order to simulate the middle and final flush processes observed in storm events, a new, realistically simple, parsimonious model (named as logistic wash-off model) is developed with the assumption that surface pollutant loads available for wash-off increase with cumulative runoff volume following a logistic curve. The popular exponential wash-off model and the newly developed model are used and compared in simulating the flush processes in storm events. The results indicate that all the three types of pollutant flushing are observed in the experiment; however, the first flush effect is weak, while the middle and final flush effects are substantial. The exponential model has performed well in simulating the first flush process but failed to simulate well the middle and final flush processes. However, the logistic wash-off model has effectively simulated all the three types of pollutant flush, and particularly, it has performed better in simulating the middle and final flush processes than the exponential model. (C) 2016 Elsevier B.V. All rights reserved.
机译:在目前的文献中,已经对城市径流污染的首次冲刷效应进行了研究和广泛报道。但是,中间冲洗和最后冲洗对污染物冲洗的影响并未引起足够的重视。此外,很少有先前的研究讨论过用于描述中间冲洗过程或最终冲洗过程的广泛使用的指数冲洗模型的适用性。本文选择了中国典型的快速城市化流域十堰河流域作为研究区域,基于监测水文图和受污染图来分析初,中,最终冲洪的影响。为了模拟在暴风雨中观察到的中间冲洗过程和最终冲洗过程,开发了一个新的,实际简单的简约模型(称为逻辑冲洗模型),并假设可用于冲洗的表面污染物负荷随累积径流量的增加而增加量遵循逻辑曲线。在模拟风暴事件中的冲洗过程时,使用了流行的指数冲刷模型和新开发的模型进行了比较。结果表明,在实验中观察到了全部三种类型的污染物冲刷。但是,第一次冲洗效果较弱,而中间冲洗效果和最终冲洗效果却很明显。指数模型在模拟第一次冲洗过程中表现良好,但未能很好地模拟中间冲洗过程和最终冲洗过程。但是,逻辑冲洗模型可以有效地模拟所有三种类型的污染物冲洗,尤其是在模拟中间冲洗过程和最终冲洗过程方面,与指数模型相比,其性能更好。 (C)2016 Elsevier B.V.保留所有权利。

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