Inverse modelling for predicting both water and nitrate movement in a structured-clay soil (Red Ferrosol)

Author:

Kirkham James M.1,Smith Christopher J.2,Doyle Richard B.1ORCID,Brown Philip H.3

Affiliation:

1. Tasmanian Institute of Agriculture, University of Tasmania, Hobart, TAS, Australia

2. Land and Water, CSIRO, Canberra, ACT, Australia

3. Centre for Plant and Water Science, Central Queensland University, Bundaberg, QLD, Australia

Abstract

Soil physical parameter calculation by inverse modelling provides an indirect way of estimating the unsaturated hydraulic properties of soils. However many measurements are needed to provide sufficient data to determine unknown parameters. The objective of this research was to assess the use of unsaturated water flow and solute transport experiments, in horizontal packed soil columns, to estimate the parameters that govern water flow and solute transport. The derived parameters are then used to predict water infiltration and solute migration in a repacked soil wedge. Horizontal columns packed with Red Ferrosol were used in a nitrate diffusion experiment to estimate either three or six parameters of the van Genuchten–Mualem equation while keeping residual and saturated water content, and saturated hydraulic conductivity fixed to independently measured values. These parameters were calculated using the inverse optimisation routines in Hydrus 1D. Nitrate concentrations measured along the horizontal soil columns were used to independently determine the Langmuir adsorption isotherm. The soil hydraulic properties described by the van Genuchten–Mualem equation, and the NO3adsorption isotherm, were then used to predict water and NO3distributions from a point-source in two 3D flow scenarios. The use of horizontal columns of repacked soil and inverse modelling to quantify the soil water retention curve was found to be a simple and effective method for determining soil hydraulic properties of Red Ferrosols. These generated parameters supported subsequent testing of interactive flow and reactive transport processes under dynamic flow conditions.

Funder

Australian Federal Government Postgraduate Scholarship

Publisher

PeerJ

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

Reference54 articles.

1. Modelling of nitrogen leaching from experimental onion field under drip fertigation;Ajdary;Agricultural Water Management,2007

2. Monitoring soil water status for micro-irrigation management versus modelling approach;Arbat;Biosystems Engineering,2008

3. Phosphorus availability under continuous point source irrigation;Ben-Gal;Soil Science Society of America Journal,2003

4. Estimation of soil hydraulic properties;Cook,2007

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