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Regional Quasi-Three-Dimensional Unsaturated-Saturated Water Flow Model Based on a Vertical-Horizontal Splitting Concept

机译:基于水平-水平分裂概念的区域拟三维不饱和饱和水流模型

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Due to the high nonlinearity of the three-dimensional (3-D) unsaturated-saturated water flow equation, using a fully 3-D numerical model is computationally expensive for large scale applications. A new unsaturated-saturated water flow model is developed in this paper based on the vertical/horizontal splitting (VHS) concept to split the 3-D unsaturated-saturated Richards’ equation into a two-dimensional (2-D) horizontal equation and a one-dimensional (1-D) vertical equation. The horizontal plane of average head gradient in the triangular prism element is derived to split the 3-D equation into the 2-D equation. The lateral flow in the horizontal plane of average head gradient represented by the 2-D equation is then calculated by the water balance method. The 1-D vertical equation is discretized by the finite difference method. The two equations are solved simultaneously by coupling them into a unified nonlinear system with a single matrix. Three synthetic cases are used to evaluate the developed model code by comparing the modeling results with those of Hydrus1D, SWMS2D and FEFLOW. We further apply the model to regional-scale modeling to simulate groundwater table fluctuations for assessing the model applicability in complex conditions. The proposed modeling method is found to be accurate with respect to measurements.
机译:由于三维(3-D)不饱和饱和水流方程的高度非线性,对于大规模应用而言,使用完整的3-D数值模型在计算上非常昂贵。本文基于垂直/水平分裂(VHS)概念,开发了一种新的非饱和饱和水流模型,将3-D非饱和饱和Richards方程拆分为二维(2-D)水平方程和一个一维(1-D)垂直方程。导出三角棱镜元件中的平均水头梯度的水平面以将3-D方程式分解为2-D方程式。然后,通过水平衡法计算出由二维方程式表示的平均水头梯度的水平面中的侧向流动。一维垂直方程通过有限差分法离散化。通过将两个方程耦合到具有单个矩阵的统一非线性系统中,可以同时求解这两个方程。通过将建模结果与Hydrus1D,SWMS2D和FEFLOW的建模结果进行比较,使用了三个综合案例来评估开发的模型代码。我们进一步将该模型应用于区域尺度建模,以模拟地下水位波动,以评估该模型在复杂条件下的适用性。发现所提出的建模方法相对于测量是准确的。

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