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Installation and operation of automatic nonpoint pollutant source measurement system for cost-effective monitoring

机译:自动面源污染物测量系统的安装和运行,可实现经济高效的监控

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In Korea, nonpoint pollutants have a significant effect on rivers' water quality, and they are discharged in very different ways depending on rainfall events. Therefore, preparing an optimal countermeasure against nonpoint pollutants requires much monitoring. The present study was conducted to help prepare a method for installing an automatic nonpoint pollutant measurement system for the cost-effective monitoring of the effect of nonpoint pollutants on rivers. In the present study, monitoring was performed at six sites of a river passing through an urban area with a basin area of 454.3 km(2). The results showed that monitoring could be performed for a relatively long time interval in the upstream and downstream regions, which are mainly comprised of forests, regardless of the rainfall amount. On the contrary, in the urban region, the monitoring had to be performed at a relatively short time interval each time when the rainfall intensity changed. This was because the flow rate was significantly dependent on the rainfall's intensity. The appropriate sites for installing an automatic measurement system were found to be a site before entering the urban region, a site after passing through the urban region, and the end of a river where the effects of nonpoint pollutant sources can be well-decided. The analysis also showed that the monitoring time should be longer for the rainfall events of a higher rainfall class and for the sites closer to the river end. This is because the rainfall runoff has a longer effect on the river. However, the effect of nonpoint pollutant sources was not significantly different between the upstream and the downstream in the cases of rainfall events over 100 mm.
机译:在韩国,面源污染物对河流的水质有重大影响,根据降雨事件,它们的排放方式非常不同。因此,准备针对非点源污染物的最佳对策需要大量监控。进行本研究是为了帮助准备一种安装自动面点污染物测量系统的方法,以经济有效地监测面点污染物对河流的影响。在本研究中,对流经市区的河流的六个站点进行了监测,流域面积为454.3 km(2)。结果表明,无论降雨量如何,在主要由森林组成的上游和下游地区都可以进行较长时间的监测。相反,在城市地区,每次降雨强度变化时,都必须在相对较短的时间间隔内进行监测。这是因为流速很大程度上取决于降雨的强度。发现安装自动测量系统的合适地点是进入市区之前的地点,穿过市区之后的地点以及可以确定非点源污染物影响的河流末端。分析还表明,对于较高降雨级别的降雨事件以及更靠近河床的站点,监测时间应更长。这是因为降雨径流对河流的影响更长。但是,在降雨事件超过100毫米的情况下,上游和下游的非点源污染源的影响没有显着差异。

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