Numerical simulation of transient water infiltration in heterogeneous soils combining central schemes and mixed finite elements

J. Aquino, A. Francisco, F. Pereira, H. P. A. Souto, F. Furtado
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引用次数: 11

Abstract

We present a new numerical scheme for the approximation of solutions of transient water infiltration problems in heterogeneous soils. The two-phase (water and air) flow problem is governed by a pressure-velocity equation coupled to a saturation equation. The numerical scheme combines a non-oscillatory, second-order, conservative central finite differencing scheme for the saturation equation with mixed finite elements for the pressure-velocity equation. An operator splitting technique allows for the use of distinct time steps for the solution of the equations of the governing system. One and two-dimensional numerical experiments show that the proposed scheme is able to capture accurately and efficiently sharp fronts in two-phase water-air problem. The simulations were carried out taking into account the effects of gravity and capillary diffusion forces.
中心方案与混合有限元相结合的非均质土壤瞬态水入渗数值模拟
本文提出了非均质土壤中瞬态水入渗问题近似解的一种新的数值格式。两相(水和空气)流动问题由一个压力-速度方程和一个饱和度方程耦合控制。数值格式结合了饱和方程的非振荡二阶保守中心有限差分格式和压力-速度方程的混合有限元格式。算子分离技术允许使用不同的时间步长来解控制系统的方程。一维和二维数值实验表明,该方法能够准确有效地捕获水-空气两相问题中的尖锐锋面。模拟考虑了重力和毛细扩散力的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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