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Classification and delineation of groundwater–lake interactions in the Nebraska Sand Hills (USA) using electrical resistivity patterns

机译:使用电阻率模式对内布拉斯加州沙丘(美国)的地下水-湖泊相互作用进行分类和描绘

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摘要

Lake–groundwater interactions exhibit a complex three-dimensional (3D) structure that is seldom studied. The utility of waterborne electrical resistivity (ER) surveys is explored for characterization of 3D groundwater flow and solute transport patterns for three lakes in the Nebraska Sand Hills, USA. Waterborne ER surveys, using contrasts between lake and groundwater solutes as natural tracers, are useful for inferring 3D patterns of groundwater flow and solute transport as well as classifying groundwater–lake interactions. Three unique groundwater flow systems are interpreted under each lake from dense networks of two-dimensional (2D) waterborne ER surveys. A lateral transition from high to low ER values beneath the saline Wilson Lake expresses its flow-through regime, where groundwater salinity indicates changes from groundwater inflow to outflow. Alkali Lake ER profiles reveal a prevalent ER increase with depth over the lakebed area that is characteristic of groundwater discharge lakes. ER profiles beneath Gimlet Lake are the most resistive and indicate pockets of high ER related to fresh groundwater discharge into the lake, supporting a flow-through regime with a short flushing time. These ER patterns correctly classify groundwater–lake interactions and provide high spatial resolution of mixing patterns for systems with varying water salinity.
机译:湖泊与地下水的相互作用表现出很少研究的复杂的三维(3D)结构。探索了水基电阻率(ER)测量的实用性,以表征美国内布拉斯加州沙丘的三个湖泊的3D地下水流量和溶质运移模式。使用湖泊和地下水溶质之间的对比作为自然示踪剂的水基ER调查可用于推断地下水流动和溶质运移的3D模式以及对地下水与湖泊之间的相互作用进行分类。根据二维(2D)水性ER测量的密集网络,在每个湖下解释了三个独特的地下水流系统。盐湖威尔逊湖下方从较高ER值到较低ER值的横向过渡表示其流过状态,其中地下水盐度指示从地下水流入到流出的变化。碱湖的ER剖面显示,随着湖床区域深度的增加,ER普遍增加,这是地下水排放湖泊的特征。 Gimlet湖下面的ER剖面最具抵抗力,表明与向地下水中注入新鲜地下水有关的高ER囊袋,支持了冲洗时间短的流过状态。这些ER模式正确地分类了地下水和湖泊之间的相互作用,并为水盐度变化的系统提供了混合模式的高空间分辨率。

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