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Delineating subsurface heterogeneity at a loop of River Steinlach using geophysical and hydrogeological methods

机译:用地球物理和水文地质方法描绘斯坦拉赫河环流的地下非均质性

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摘要

Stratigraphic heterogeneity is a key controlling factor for flow and transport in groundwater systems. In this case study, we have combined two- and three-dimensional images of electric resistivity with hydrogeological data to delineate such stratigraphic heterogeneity at a loop of River Steinlach close to Tubingen, Germany, where we estimated spatially varying aquifer parameters using established evaluation techniques. We developed a three-layer stratigraphic model consisting of heterogeneous sandy gravel overlain by a fine alluvium including top soil, and underlain by sandstone weathered at its top. The sandy gravel makes up the aquifer unit while we interpret the sandstone as aquitard. We classified the area into two stratigraphic segments based on resistivity data. The Southern segment consists of a thicker alluvium where the aquifer material contains more clay than in the Northern segment. Two different stratigraphic structures were also delineated at the Southern and Northern segments, respectively. These structures are visible in inversion results as low-resistivity features trending in the SE-NW in the Southern segment and NE-NW in the Northern segment. Both structures may be previous flow paths of River Steinlach, and the low permeability material overlying them may impair flow exchange in the area. We performed slug and pumping tests to estimate the hydraulic conductivity (K) of the aquifer. The K distributions show slight variation with higher values obtained at wells within the Northern segment and close to the river bank. A qualitative comparison of measured hydraulic conductivities with the resistivity distribution shows good agreement of the spatial patterns. The stratigraphic and hydraulic heterogeneities delineated in this work are important for experimental and modeling studies of flow, transport, and hyporheic exchange at the site.
机译:地层非均质性是地下水系统流动和运输的关键控制因素。在本案例研究中,我们将电阻率的二维和三维图像与水文地质数据相结合,以描绘德国图宾根附近Steinlach河环路上的地层非均质性,在此我们使用已建立的评估技术估算了空间变化的含水层参数。我们开发了一个三层地层模型,该模型由非均质的砂砾砾石覆盖,该砂砾砾石覆盖在包括表层土壤在内的精细冲积层上,而下层覆盖在顶部风化的砂岩中。砂砾构成含水层单元,而我们将砂岩解释为阿基尔。根据电阻率数据,我们将该区域分为两个地层。南部段由较厚的冲积层组成,其中含水层材料比北部段含更多的粘土。在南段和北段也分别划定了两种不同的地层结构。这些结构在反演结果中可见,因为南部地区的SE-NW和北部地区的NE-NW呈现低电阻率特征。这两种结构都可能是Steinlach河的先前流动路径,并且覆盖它们的低渗透性材料可能会损害该地区的流动交换。我们进行了塞子和抽水试验,以估算含水层的水力传导率(K)。在北段和靠近河岸的油井中,K分布显示出较小的变化,并具有较高的值。对测得的水力传导率与电阻率分布的定性比较表明,空间模式具有很好的一致性。这项工作中描述的地层和水力非均质性对于现场的流动,输运和低渗交换的实验和模型研究很重要。

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