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Vertically integrated flow in stratified aquifers

机译:分层含水层中的垂直集成流量

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We present a set of continuous discharge potentials that can be used to determine the vertically integrated flow in stratified aquifers. The method applies to cases where the boundaries are vertical and either the hydraulic head is given, or the boundary is a seepage face, or the integrated discharge is given. The approach is valid for cases of given recharge through the upper and/or lower boundaries of the aquifer. The method is valid for any values of hydraulic conductivity; there are no limitations of the contrast for the method to be valid. The flows in the strata may be either confined or unconfined, and locally perched conditions may exist, but the effect of capillarity is not included. The hydraulic head is determined by applying the Dupuit-Forchheimer approximation. The main advantage of the approach is that very complex conditions in stratified aquifer systems, including locally perched conditions and extremely complex flow systems can be treated in a relatively straight forward approach by considering only the vertically integrated flow rates. The approach is particularly useful for assessing groundwater sustainability, as a model to be constructed prior to developing a fully three-dimensional numerical model. (C) 2017 Elsevier B.V. All rights reserved.
机译:我们提出了一组连续放电电位,可用于确定分层含水层中的垂直集成流量。该方法适用于界面是垂直的情况,并且给出液压头或边界是渗出面,或者给出了集成放电。该方法对于通过含水层的上/或下边界给予给予补给的情况有效。该方法对液压导电性的任何值有效;对方法有效的对比度没有局限性。地层中的流动可以是狭窄的或非束缚的,并且可能存在局部栖息的条件,但不包括毛细管性的效果。液压头通过施加丹底骨干近似来确定。该方法的主要优点是分层含水层系统中的非常复杂的条件,包括局部栖息的条件和极其复杂的流量系统可以通过考虑垂直集成的流速来以相对直接的方法处理。该方法特别适用于评估地下水可持续性,作为在开发完全三维数值模型之前构建的模型。 (c)2017年Elsevier B.V.保留所有权利。

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