...
首页> 外文期刊>Journal of Hydrology >Combining high resolution vertical gradients and sequence stratigraphy to delineate hydrogeologic units for a contaminated sedimentary rock aquifer system
【24h】

Combining high resolution vertical gradients and sequence stratigraphy to delineate hydrogeologic units for a contaminated sedimentary rock aquifer system

机译:结合高分辨率垂直梯度和层序地层学来描述受污染沉积岩含水层系统的水文地质单元

获取原文
获取原文并翻译 | 示例
           

摘要

Hydrogeologic units (HGUs), representing subsurface contrasts in hydraulic conductivity, form the basis for all conceptual and numerical models of groundwater flow. However, conventionally, delineation of these units relies heavily on data sets indirect with respect to hydraulic properties. Here, we use the spatial and temporal characteristics of the vertical component of hydraulic gradient (i.e., vertical gradient) as the primary line of evidence for delineating HGUs for Cambrian-Ordovician sedimentary rocks at a site in Dane County, Wisconsin. The site includes a 16 km(2) area encompassing a 3 km long mixed organic contaminants plume. The vertical gradients are derived from hydraulic head profiles obtained using high resolution Westbay multilevel systems installed at 7 locations along two, orthogonal 4 km long cross sections and monitoring to depths between 90 and 146 m with an average of 3-4 monitoring zones per 10 m. These vertical gradient cross-sections reveal 11 laterally extensive HGUs with contrasting vertical hydraulic conductivity (K-v). The position and thickness of the K-v contrasts are consistently associated with sequence stratigraphic features (maximum flooding intervals and sequence boundaries) distinguished at the site using cores and borehole geophysical logs. The same sequence stratigraphic features are also traceable across much of the Cambrian-Ordovician aquifer system of the Midwest US. The vertical gradients and sequence stratigraphy were arrived at independently and when combined provide a hydraulically calibrated sequence stratigraphic framework for the site. This framework provides increased confidence in the precise delineation and description of the nature of HGU contacts in each borehole, reduced uncertainty in interpolation of the HGUs between boreholes, and some capability to predict HGU boundaries and thickness in offsite areas where high resolution hydraulic data sets are not available. Consequently, this HGU conceptual model will serve as a better basis for numerical simulations of groundwater flow and contaminant transport needed for continued risk assessment and to evaluate potential remedial technologies for the site. More broadly, the association between K-v contrasts and sequence stratigraphy demonstrated at this site provides valuable insight into the relationship between geology and hydraulic contrasts that can be transferred to other areas of the upper Midwest US and perhaps elsewhere to strata deposited in similar settings. (C) 2016 Elsevier B.V. All rights reserved.
机译:代表地下导流能力差异的水文地质单位(HGU)构成了地下水概念和数值模型的基础。然而,常规上,这些单元的描绘在很大程度上依赖于关于水力特性的间接数据集。在这里,我们使用水力梯度垂直分量(即垂直梯度)的时空特征作为描绘威斯康星州丹恩县某地点的寒武纪-奥陶纪沉积岩HGU的主要依据。该站点包括一个16 km(2)的区域,其中包含一个3 km长的混合有机污染物羽流。垂直梯度来自使用高分辨率Westbay多级系统获得的液压头轮廓,该系统安装在沿着两个正交的4 km长横截面的7个位置处,并监测到90至146 m之间的深度,每10 m平均3-4个监测区域。这些垂直梯度横截面揭示了11个横向扩展的HGU,具有相反的垂直水力传导率(K-v)。 K-v对比的位置和厚度与使用岩心和井眼地球物理测井在现场区分出的层序地层特征(最大淹没层段和层序边界)一致。在美国中西部的许多寒武纪-奥陶纪含水层系统中,同样的层序地层特征也是可追溯的。垂直梯度和层序地层是独立得出的,结合起来可以为现场提供水力校准的层序地层框架。该框架可提高对每个钻孔中HGU接触的性质的精确描述和描述的信心,减少钻孔之间HGU插值的不确定性,并具有预测高分辨率液压数据集的异地区域中HGU边界和厚度的能力。无法使用。因此,该HGU概念模型将为进行持续风险评估所需的地下水流量和污染物迁移的数值模拟和评估场地的潜在修复技术提供更好的基础。更广泛地说,在该站点上显示的K-v对比与层序地层学之间的联系为地质和水力对比之间的关系提供了宝贵的见解,这些对比可以转移到美国中西部的其他地区,也可能转移到其他地区沉积在相似环境中的地层。 (C)2016 Elsevier B.V.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号