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Boundary interface water infiltration into layered soils using dual reciprocity methods

机译:使用双互惠方法将边界界面水渗透到分层土壤中

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In this paper, some steady infiltration problems from periodic channels into two-layered soils are considered. The problems are governed by a system of Richards' equations with boundary interface conditions. To solve the problems, the system of Richards' equations with respect to some boundary conditions are transformed into a system of steady diffusion-convection equations with respect to transformed boundary conditions. The mathematical model is solved numerically using a proposed Dual Reciprocity Method (DRM). Numerical solutions are obtained to describe the distribution of soil water potential and hydraulic conductivity in the soils. The results demonstrate how soil coarseness and saturated hydraulic conductivity affect the values of soil water potential and hydraulic conductivity.
机译:在本文中,考虑了从周期性通道到两层土壤中的一些稳定渗透问题。问题受Richards'方程系统的管辖,具有边界接口条件。为了解决问题,研究了关于一些边界条件的理查兹方程的系统被转变为关于变换的边界条件的稳态扩散 - 对流方程的系统。使用所提出的双互补方法(DRM)在数值上进行了数学模型。获得数值解决方案以描述土壤中土壤水势和水力传导率的分布。结果表明,土壤粗糙度和饱和液压导电性如何影响土壤水势和水力传导率的值。

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