首页> 外文期刊>International Journal of Environmental Science and Technology >Small-scale watershed extended method for non-point source pollution estimation in part of the Three Gorges Reservoir Region.
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Small-scale watershed extended method for non-point source pollution estimation in part of the Three Gorges Reservoir Region.

机译:三峡库区部分地区非点源污染的小尺度分水岭扩展方法。

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Non-point source (NPS) pollution has been increasingly recognized as a major contributor to the declining quality of aquatic environment in recent years. Because of the data shortage, the non-point source loads estimation in the large-scale watershed is always difficult in most developing countries. In this study, small-scale watershed extended method (SWEM) was introduced with a case study in the middle part of Three Gorges Reservoir Region (TGRR). Small-scale watershed extended method is the method which uses physical-based models in some small typical catchments of the targeted large watershed, and then the parameters obtained from those small catchments are extended to the surrounding area until the non-point source pollution loads in the entire watershed or region are obtained. The selected small catchments should have sufficient data. Here, the middle part of the Three Gorges Reservoir Region, about 12,500 km2, was chosen as the targeted region for the case study. In this region, considering the data availability, Xiaojiang River was screened as a typical watershed and was simulated with Soil and Water Assessment Tool model through accurate parameter calibration and validation. And then the parameter group obtained in Xiaojiang River Watershed was extended to the entire study area to quantify the total non-point source pollution loads. After which, the spatio-temporal characteristics of the non-point source pollution in the middle part of the Three Gorges Reservoir Region were analyzed, as well as the pollution from each tributary and different under layer surface conditions. The small-scale watershed extended method provides a practical approach for non-point source pollution loads estimation in the large-scale watershed or region.
机译:近年来,非点源(NPS)污染已被日益视为导致水生环境质量下降的主要因素。由于数据不足,在大多数发展中国家中,大型流域的面源负荷估算始终很困难。在这项研究中,以三峡库区(TGRR)中部为例,引入了小规模分水岭扩展方法(SWEM)。小规模流域扩展方法是在目标大流域的一些典型小流域中使用基于物理的模型,然后将从这些小流域获得的参数扩展到周围区域,直到非点源污染负荷达到获得整个流域或区域。所选的小流域应有足够的数据。在这里,三峡水库地区的中部地区(约12,500 km 2 )被选为案例研究的目标区域。在该地区,考虑到数据的可用性,将小江筛选为典型的分水岭,并通过土壤和水评估工具模型通过精确的参数校准和验证对小江进行了模拟。然后,将在小江流域获得的参数组扩展到整个研究区域,以量化总的面源污染负荷。然后,分析了三峡库区中部非点源污染的时空特征,以及各支流和不同地表条件下的污染。小规模流域扩展方法为大型流域或区域的面源污染负荷估算提供了一种实用的方法。

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