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Pumped Well Drainage System Effects on Mitigating Barrage-Induced Inundation Problems in Low-Lying Plains

机译:抽水机排水系统对缓解低洼平原弹幕引起的淹没问题的影响

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The construction of a new barrage, the Gangjeong-Koryeong Barrage, in the Nakdong River and related sluice-gate operation has resulted in higher river-water and groundwater levels in the floodplain, which has caused the land to become swampy. The barrage construction caused changes in the groundwater flow direction and amounts of inflow and outflow between the river and surrounding area. The river has been the source of most of the groundwater in the riparian zone due to river leakage (from 96 to 1,975 m3/day) since being dammed. Two methods were proposed to lower the groundwater level in the swampy area: a drainage channel system and a pumping well system. Numerical simulations to assess the effectiveness of each method were performed, and the pumping well system was shown to be the more effective of the two. Following the construction of a drainage system consisting of eight pumping wells, the groundwater levels returned to predam levels. This study shows that the hydrological effects of high river-water levels in the riparian zone need to be examined thoroughly when a river barrage is designed and constructed.
机译:在那洞河建造新的江堤-高陵水坝,以及相关的闸门操作,导致洪泛区的河水和地下水水位升高,这使土地变得一片沼泽。拦河坝的建设引起了地下水流向的变化以及河流与周围地区之间的流入和流出量的变化。自从筑坝以来,由于河流渗漏(从每天96到1,975立方米/天),河流一直是河岸地区大部分地下水的来源。提出了两种方法来降低沼泽地区的地下水位:排水通道系统和抽水井系统。进行了数值模拟以评估每种方法的有效性,并且泵井系统被证明在两种方法中更有效。在建设了由八口抽水井组成的排水系统之后,地下水位又恢复到坝前水位。这项研究表明,在设计和建造河流拦河坝时,需要彻底检查河岸带高河水位的水文影响。

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