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A semi-continuum model of saturation overshoot in one dimensional unsaturated porous media flow

机译:一维非饱和多孔介质流中饱和超调的半连续模型

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摘要

A semi-continuum model for fluid flow in saturated-unsaturated porous medium in one spatial dimension is presented. The model is based on well-established physics, measurable parameters and material characteristics. The porous material is characterized by porosity, intrinsic permeability, main wetting and draining branches of the retention curve, and the saturation dependence of the relative permeability. The fluid is characterized by its density and dynamic viscosity. The only physics involved is the mass balance of fluid in porous media together with the Darcy-Buckingham Law for fluid flow in unsaturated porous media. The model is a cellular automaton based on the Macro Modified Invasion Percolation concept of dividing the porous medium into blocks which are not infinitesimal and are assumed to retain the characteristics of a porous medium. The cellular automaton repeats three successive rules: saturation update in each block, pressure update in each block, and flux update between neighboring blocks. The model tracks the evolution of the relative saturation, the fluid capillary pressure, and the fluid flux. The model is shown to reproduce qualitatively and quantitatively all features of one dimensional saturation overshoot behavior reported in the literature.
机译:提出了在一个空间维度上饱和-不饱和多孔介质中流体流动的半连续模型。该模型基于公认的物理原理,可测量的参数和材料特性。多孔材料的特征在于孔隙率,固有渗透率,保留曲线的主要润湿和排水分支以及相对渗透率的饱和度依赖性。流体的特征在于其密度和动态粘度。唯一涉及的物理是多孔介质中流体的质量平衡,以及达西-白金汉定律(Darcy-Buckingham Law),用于非饱和多孔介质中的流体流动。该模型是基于宏修改入侵渗透概念的元胞自动机,将多孔介质划分为多个块,这些块不是无限小,并假定保留了多孔介质的特征。元胞自动机重复三个连续的规则:每个模块中的饱和度更新,每个模块中的压力更新以及相邻模块之间的通量更新。该模型跟踪相对饱和度,流体毛细管压力和流体通量的变化。该模型显示出定性和定量地再现了文献中报道的一维饱和过冲行为的所有特征。

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