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首页> 外文期刊>Hydrogeology journal >Geological controls and effects of floodplain asymmetry on river–groundwater interactions in the southeastern Coastal Plain, USA
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Geological controls and effects of floodplain asymmetry on river–groundwater interactions in the southeastern Coastal Plain, USA

机译:美国东南沿海平原的洪泛平原不对称性对其地质控制和影响

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摘要

Channel sediment and alluvial aquifer hydraulic properties exert a major control on river–groundwater interactions. Channels and floodplains are often asymmetrical, resulting in differences in sediment hydraulic properties across the river. Floodplain asymmetry is common along Coastal Plain rivers in South Carolina and North Carolina, USA. The Tar River, North Carolina, has an asymmetrical valley. The study objective was to characterize the effects of floodplain asymmetry and geological controls on river–groundwater interactions. Floodplain and river channel sediments adjacent to the river were characterized with split spoon cores and hand auger samples along a 22-km reach. Hydrogeology was characterized with 38 piezometers and water level recorders in and adjacent to the river. Ground penetrating radar was used to define the shallow stratigraphy. Channel sediments were significantly different between the north and south sides of the river. Hydraulic conductivity and groundwater inputs were greater on the side of the river (north) that contained more permeable fluvial deposits. Groundwater chemistry (δ18O, specific conductance) data also suggested greater exchange between surface water and groundwater on the north side of the river channel. A conceptual hydrogeological model illustrates that groundwater movement and contaminant transport to the river differs across the channel due to asymmetrical geology.
机译:河道沉积物和冲积含水层的水力特性对河水与地下水的相互作用起主要控制作用。河道和洪泛区通常是不对称的,导致整个河流的沉积物水力特性不同。在美国南卡罗来纳州和北卡罗来纳州的沿海平原河流中,洪泛平原不对称现象很普遍。北卡罗来纳州的塔尔河有一个不对称的山谷。研究目的是表征洪泛区的不对称性和地质控制对河流-地下水相互作用的影响。与河流相邻的洪泛区和河道沉积物的特征是,在22公里的范围内,分叉的勺子芯和手持式螺旋钻样品。水文地质学的特征是在河中及其附近设有38个压力计和水位记录仪。探地雷达用于确定浅层地层。河的南北两侧的河道沉积物明显不同。在河道(北)的水力传导率和地下水输入量更大(河床含有更多可渗透的河流沉积物)。地下水化学(δ18O,比电导)数据也表明,河道北侧的地表水与地下水之间的交换更大。一个概念性的水文地质模型表明,由于地质条件不对称,整个河道中的地下水运动和污染物向河流的迁移是不同的。

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