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Modeling the effects of point and non-point source pollution on a diversion channel from Yellow River to an artificial lake in China

机译:点源和面源污染对黄河引水至人工湖的影响模型

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The Dragon lake diversion channel (DLDC) is the only river that recharges Dragon Lake, an artificial lake in China. This paper examines the main factors influencing water quality by investigating point source and non-point source pollutants along the main route. Based on the complicated system of rivers and desilting basins, a three-dimensional water quality model using environmental fluid dynamics code (EFDC) was developed. The model of DLDC was calibrated and verified using observed data. The error ranges of river water level, total phosphorus, total nitrogen and chemical oxygen demand were within 5%, 10%, 16% and 20%, respectively, all of which meet the precision requirement. The model was employed to predict the concentrations of pollutants in the main stream under current pollution loads within a year and a flood lasting for 24 hours. The results revealed that the main pollution sources that influence the water quality of waterways were the point sources followed by the non-point pollution sources. Water quality improved when large water quantities were delivered and this trend can be described as dilution. The water quality of the Dongfeng main channel meets the requirement; however, the water quality of the Dongfeng River is somewhat poor, and the water quality of the Wei River is seriously contaminated. To address these problems, we suggest that the Dongfeng River and Wei River adopt a culvert under its riverbeds.
机译:龙湖引水渠(DLDC)是唯一为中国人工湖龙湖注入水的河流。本文通过调查沿主要途径的点源和非点源污染物,研究了影响水质的主要因素。基于河流和淤积盆地的复杂系统,利用环境流体动力学代码(EFDC)建立了三维水质模型。使用观察到的数据对DLDC模型进行校准和验证。河流水位,总磷,总氮和化学需氧量的误差范围分别在5%,10%,16%和20%以内,均满足精度要求。该模型用于预测一年内当前污染负荷和持续24小时的洪水下主流中污染物的浓度。结果表明,影响航道水质的主要污染源为点源,其次是非点源。当输送大量水时,水质得到改善,这种趋势可以说是稀释。东风干渠水质符合要求;但是,东风河水质较差,渭河水质受到严重污染。为了解决这些问题,我们建议东风河和渭河在河床下采用涵洞。

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