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Fracture Control of Ground Water Flow and Water Chemistry in a Rock Aquitard

机译:阿基塔尔岩体中地下水流动和水化学的断裂控制

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摘要

There are few studies on the hydrogeology of sedimentary rock aquitards although they are important controls in regional ground water flow systems. We formulate and test a three-dimensional (3D) conceptual model of ground water flow and hydrochemistry in a fractured sedimentary rock aquitard to show that flow dynamics within the aquitard are more complex than previously believed. Similar conceptual models, based on regional observations and recently emerging principles of mechanical stratigraphy in heterogeneous sedimentary rocks, have previously been applied only to aquifers, but we show that they are potentially applicable to aquitards. The major elements of this conceptual model, which is based on detailed information from two sites in the Maquoketa Formation in southeastern Wisconsin, include orders of magnitude contrast between hydraulic diffusivity (K/S_s) of fractured zones and relatively intact aquitard rock matrix, laterally extensive bedding-plane fracture zones extending over distances of over 10 km, very low vertical hydraulic conductivity of thick shale-rich intervals of the aquitard, and a vertical hydraulic head profile controlled by a lateral boundary at the aquitard subcrop, where numerous surface water bodies dominate the shallow aquifer system. Results from a 3D numerical flow model based on this conceptual model are consistent with field observations, which did not fit the typical conceptual model of strictly vertical flow through an aquitard. The 3D flow through an aquitard has implications for predicting ground water flow and for planning and protecting water supplies.
机译:尽管沉积岩阿奎塔尔是区域地下水流系统中的重要控制手段,但对其水文地质学的研究很少。我们制定并测试了破裂的沉积岩阿奎塔德中地下水流动和水化学的三维(3D)概念模型,以表明该阿奎塔德中的水流动力学比以前认为的更为复杂。基于区域性观测和异质沉积岩中新出现的机械地层学原理的类似概念模型,以前仅适用于含水层,但我们证明了它们潜在地适用于aquitard。该概念模型的主要要素基于威斯康星州东南部Maquoketa组两个地点的详细信息,包括裂缝区的水力扩散率(K / S_s)与相对完整的阿基塔尔岩石基质(横向扩展)之间的数量级对比。层理面破裂带延伸超过10 km,在极高的页岩富油层段中,垂直水力传导率非常低,并且由水准面次作物在侧向边界控制的垂直水力头剖面,其中大量地表水体占主导地位浅层含水层系统。基于此概念模型的3D数值流模型的结果与现场观察结果一致,这与严格的垂直流经阿奎尔德流的典型概念模型不符。流经水族箱的3D流量对预测地下水流量以及规划和保护水源具有影响。

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