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Steady Infiltration in Sloping Porous Domains: the Onset of Saturation
Authors:Tritscher  Peter  Broadbridge  Philip  Stewart  Janine M  Wayne Read  W
Institution:(1) University of Wollongong, NSW, Australia, 2522;(2) Department of Mathematics and Statistics, James Cook, University of North Queensland, Townsville, Australia, 4811
Abstract:In a recent paper, analytical series methods have been developed to solve the steady quasilinear unsaturated flow equations for arbitrary two-dimensional geometry and mass flux boundary conditions. We use these analytic series methods to examine the relationships among the parameters governing infiltration and the onset of saturation. As the vehicle for this analysis we use the canonical hillslope geometry, viz. an inclined permeable region whose cross-section is a long, thin parallelogram. We find that the lsquocriticalrsquo infiltration rate (at the onset of saturation) varies monotonically with aspect ratio, wetted surface fraction and dimensionless sorptive number. However, the critical infiltration rate varies nonmonotonically with the inclination of the permeable region and attains a maximum value. For clay soils it is found that the inclination has little effect on the maximum critical infiltration rate. However, large aspect ratios or wetted fraction cause a significant reduction in the maximum, to the point where infiltration rates as low as 3 mm/year cause saturation. Sandy soils tend to be saturated but if the inclination is near horizontal a small but signficant unsaturated flow is possible.
Keywords:unsaturated  steady state  quasilinear  nascent saturation  vadose geometry  series solution  
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