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A numerical model for density-and--viscosity-dependent flows in two--dimensional variably saturated porous media

机译:二维可变饱和多孔介质中与密度和粘度有关的流动的数值模型

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We present a formulation for water flow and solute transport in two--dimensional variably saturated media that accounts for the effects of the solute on water density and viscosity. The governing equations are cast in a dimensionless form that depends on six dimensionless groups of parameters. These equations are discretized in space using the Galerkin finite element formulation and integrated in time using the backward Euler scheme with mass lumping. The modified Picard method is used to linearize the water flow equation. The resulting numerical model, the MARUN model, is verified by comparison to published numerical results. It is then used to investigate beach hydraulics at seawater concentration (about 30 g l~(-1)) in the context of nutrients delivery for bioremediation of oil spills on beaches. Numerical simulations that we conducted in a rectangular section of a hypothetical beach revealed that buoyancy in the unsaturated zone is significant in soils that are fine textured, with low anisotropy ratio, and/or exhibiting low physical dispersion. In such situations, application of dissolved nutrients to a contaminated beach in a freshwater solution is superior to their application in a seawater solution. Concentration-engendered viscosity effects were negligible with respect to concentration-engendered density effects for the cases that we considered.
机译:我们提出了在二维可变饱和介质中水流和溶质运移的公式,该公式说明了溶质对水密度和粘度的影响。控制方程以无量纲形式转换,该无量纲形式取决于六个无量纲参数组。这些方程使用Galerkin有限元公式在空间中离散化,并使用带有质量集总的后向Euler方案及时积分。改进的Picard方法用于线性化水流方程。通过与发布的数值结果进行比较,可以验证所得的数值模型MARUN模型。然后将其用于调查在海水浓度(约30 g l((-1))下的海滩水力学,并通过营养输送来对海滩上的溢油进行生物修复。我们在一个假设的海滩的矩形区域进行的数值模拟显示,在质地细密,各向异性比率低和/或物理分散度低的土壤中,非饱和区的浮力非常重要。在这种情况下,将溶解的养分在淡水溶液中施用到受污染的海滩上要优于在海水溶液中的溶解养分。对于我们考虑的情况,浓度引起的粘度效应相对于浓度引起的密度效应可以忽略不计。

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