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MODELING FINGER DEVELOPMENT AND PERSISTENCE IN INITIALLY DRY POROUS MEDIA

机译:初始干燥多孔介质中手指的形成和持久性建模

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摘要

The mechanism for the growth and persistence of gravity-driven fingered flow of water in initially dry porous media is described. A Galerkin finite element solution of the two-dimensional Richards equation with the associated parameter equations for capillary hysteresis in the water retention function is presented. A scheme for upstream weighting of internodal unsaturated hydraulic conductivities is applied to limit smearing of steep wetting fronts. The growth and persistence of a single finger in an initially dry porous media is simulated using this numerical solution scheme. To adequately simulate fingered flow, it was found that the upstream weighting factor had to be negative, meaning that the internodal unsaturated hydraulic conductivities were weighted more by the downstream node. It is shown that the growth and persistence of a finger is sensitive to the character of the porous media water retention functions. For porous media where the water-entry capillary pressure on the main wetting function is less than the air-entry capillary pressure on the main drainage function, a small perturbation will grow into a finger, and during sequential drainage and wetting the finger will persist. In contrast, for porous media where the water-entry capillary pressure on the main wetting function is greater than the air-entry capillary pressure on the main drainage function, the same small perturbation will dissipate by capillary diffusion. The finger widths derived from the numerical simulation are similar to those predicted by analytical theory.
机译:描述了在最初干燥的多孔介质中重力驱动的指状水的生长和持久性的机制。提出了二维Richards方程的Galerkin有限元解以及保水函数中毛细滞回的相关参数方程。节点间不饱和水力传导率的上游加权方案适用于限制陡峭的湿润锋面的涂抹。使用此数值解决方案可以模拟单个手指在最初干燥的多孔介质中的生长和持久性。为了充分模拟指状流,发现上游加权因子必须为负,这意味着节点间的非饱和水力传导率被下游节点加权。结果表明,手指的生长和持久性对多孔介质保水功能的特性很敏感。对于主要润湿功能上的入水毛细管压力小于主要排水功能上的入气毛细管压力的多孔介质,手指会产生小的扰动,并且在顺序排水和润湿过程中,手指将持续存在。相反,对于多孔介质,其主要润湿功能上的水进入毛细管压力大于主要排水功能上的空气入口毛细管压力,相同的小扰动将通过毛细管扩散而消散。从数值模拟得出的手指宽度类似于分析理论预测的手指宽度。

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