Analytical solution to transient Richards' equation with realistic water profiles for vertical infiltration and parameter estimation

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Abstract

A general analytical model for one-dimensional transient vertical infiltration is presented. The model is based on a combination of the Brooks and Corey soil water retention function and a generalized hydraulic conductivity function. This leads to power law diffusivity and convective term for which the exponents are functions of the inverse of the pore size distribution index. Accordingly, the proposed analytical solution covers many existing realistic models in the literature. The general form of the analytical solution is simple and it expresses implicitly the depth as function of water content and time. It can be used to model infiltration through semi-infinite dry soils with prescribed water content or flux boundary conditions. Some mathematical expressions of practical importance are also derived. The general form solution is useful for comparison between models, validation of numerical solutions and for better understanding the effect of some hydraulic parameters. Based on the analytical expression, a complete inverse procedure which allows the estimation of the hydraulic parameters from water content measurements is presented.

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APA

Hayek, M. (2016). Analytical solution to transient Richards’ equation with realistic water profiles for vertical infiltration and parameter estimation. Water Resources Research, 52(6), 4438–4457. https://doi.org/10.1002/2015WR018533

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