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Theoretical and conceptual models of subsurface hillslope flows

机译:地下坡面渗流的理论模型和概念模型

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摘要

Theoretical and conceptual models for predicting the subsurface flow in a sloping aquifer are presented. One category of models is of the lumped conceptual type that is based on combining the continuity equation with discharge-storage relationships derived from the steady state solutions of the linearized Boussinesq equation. The second categories of models are derived from the linearized unsteady Boussinesq equation using the method of Green's function. The Green's function solution determines the water table profile and the aquifer outflow for nonuniform and nonsteady recharge distribution, arbitrary initial water table profile, and time-varying stream level at the downstream end. The latter theoretical models pertain to a finite domain and to a semi-infinite domain and are of two types depending on the linearization approach. The conceptual and theoretical models are used to derive the outflow and the cumulative outflow expressions for a particular set of conditions, and a comparative analysis is carried out. Semi-infinite aquifer models generate almost the same results as the more complicated finite aquifer models and the quasi-steady state models perform as well as the nonsteady ones for long recharge events. The kinematic wave model is also shown to provide a good approximation of Boussinesq models for steep slopes and high hydraulic conductivity. The application of the various models is also illustrated for three published experimental data. The present models can be easily incorporated in catchments models and can provide a suitable framework for aquifer parameter estimation, base flow separation and recession analysis, and analysis of drainage in landfills.
机译:提出了用于预测倾斜含水层地下流量的理论模型和概念模型。一类模型是集中概念类型的模型,该模型基于将连续性方程与从线性化Boussinesq方程的稳态解导出的放电-存储关系相结合的基础。第二类模型是使用格林函数的方法从线性化非定常Boussinesq方程导出的。 Green的功能解决方案确定了地下水位分布图和含水层流出量,以用于非均匀和不稳定的补给分布,任意的初始地下水位分布图以及下游端的时变水位。后者的理论模型与有限域和半无限域有关,根据线性化方法分为两种类型。使用概念模型和理论模型来导出特定条件集的流出量和累积流出量表达式,并进行了比较分析。半无限含水层模型产生的结果几乎与更复杂的有限含水层模型产生的结果相同,对于长时间补给事件而言,准稳态模型的表现与非稳态模型的表现相同。运动波模型也显示出可以很好地近似Boussinesq模型,用于陡坡和高水力传导率。还针对三个已发布的实验数据说明了各种模型的应用。本模型可以轻松地纳入流域模型中,并且可以为含水层参数估计,基础流分离和衰退分析以及垃圾掩埋场的排水分析提供合适的框架。

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