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Assessment of riverside groundwater flood risk induced by high river water levels using a numerical model and monitoring data

机译:利用数值模型和监测数据评估高河水位引起的河岸地下水洪水风险

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摘要

Large barrages have been constructed on the main rivers in South Korea to store water and mitigate fluvial flooding damage. However, the increase in water levels behind the barrages can potentially lead to a rise in groundwater levels in the riversides. The purpose of this study was to describe the effect of a barrage on groundwater levels and to test the applicability of a numerical model to groundwater inundation in this context. The Shincheon-Baekcheon catchment is characterised mainly by agricultural land use and includes significant greenhouse cultivation. Its two zones, which are lower A and upper B basins, mainly yield fine-and coarse-grained deposits, respectively. Trend and distribution analyses of manual and automatic measurements of groundwater levels indicated that: (1) the groundwater levels generally increased as the river water levels rose after the river was dammed; (2) the significant correlation between groundwater and river water levels could lead to reductions in the groundwater levels if the barrage gates were opened as a control measure; and (3) the lowering of high groundwater levels during dry seasons is important for preventing soil wetting in the riversides.
机译:在韩国主要河流上建造了大型拦河坝,以储存水和减轻河流洪水的破坏。但是,拦河坝后面的水位增加可能会导致河边的地下水位上升。这项研究的目的是描述拦河坝对地下水位的影响,并在此背景下测试数值模型对地下水淹没的适用性。新川-白川流域的主要特点是农业用地,包括大量的温室栽培。它的两个区域分别是下A盆地和上B盆地,主要分别产生细粒和粗粒沉积物。手动和自动测量地下水位的趋势和分布分析表明:(1)筑坝后,地下水位通常随着河流水位的升高而增加; (2)如果打开堰门作为控制措施,则地下水和河水位之间的显着相关性可能导致地下水位降低; (3)在干旱季节降低高地下水位对防止河岸土壤变湿很重要。

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