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Groundwater flow and groundwater-stream interaction in fractured and dipping sedimentary rocks: Insights from numerical models

机译:裂隙和浸润沉积岩中的地下水流和地下水流相互作用:数值模型的启示

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摘要

Groundwater flow is influenced by topography, but in fractured and dipping sedimentary rocks, it is also influenced by structure. Field evidence indicates that groundwater is older on the downdip side of a stream (asymmetry) and that dip-aligned streams receive more base flow than strike-aligned streams (anisotropy). We present detailed numerical models to evaluate the effects of various factors that influence groundwater flow pathways. The models simulate a small watershed drained by headwater streams and underlain by dipping strata. Groundwater flow can be characterized by three components: down the hydraulic gradient, downdip, and along strike. The degree of anisotropy and asymmetry depends on several factors: efficiency of the weathered horizon, bedding anisotropy, and bedding dip angle. Whereas anisotropy increases linearly with dip angle, asymmetry is greatest at a threshold angle. This threshold angle is related to the mean groundwater flow direction in an equivalent homogeneous and isotropic system.
机译:地下水流量受地形影响,但在裂隙和浸润的沉积岩中,地下水也受结构影响。现场证据表明,在水流的下垂侧地下水较老(非对称性),并且与游隙对齐的水流(各向异性)相比,倾角对齐的水流接收更多的基流。我们提供详细的数值模型来评估影响地下水流动路径的各种因素的影响。这些模型模拟了一个小流域,该小流域由上游水流排出,并通过浸入地层在地下。地下水流的特征可分为三个部分:水力梯度下降,下倾和沿走向。各向异性和不对称程度取决于几个因素:风化地平线的效率,层理各向异性和层理倾角。各向异性随倾角线性​​增加,而非对称性在阈值角处最大。该阈值角与等效均质各向同性系统中的平均地下水流向有关。

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