Journal article

Understanding and predicting deep percolation under surface irrigation

MG Bethune, B Selle, QJ Wang

Water Resources Research | AMER GEOPHYSICAL UNION | Published : 2008

Abstract

A lysimeter experiment was conducted in southeastern Australia to quantify the deep percolation response under irrigated pasture to different soil types, water table depths, and ponding times during surface irrigation. Deep percolation was governed by the final infiltration rate of the subsoil, the ponding time, the water table depth, and the amount of water stored in the rootzone between saturation and field capacity. These key variables were used to characterize both steady- and nonsteady-state percolation in a conceptual model of deep percolation. The conceptual model was found to provide an effective representation of deep percolation for both the lysimeter and field-scale water balance ..

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University of Melbourne Researchers

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Funding Acknowledgements

This work was funded by the Department of Primary Industries; the Department of Sustainability and Environment, Dairy Australia, Murray Dairy; and the Goulburn Broken Catchment Management Authority. We greatly appreciate the hard work of Tony Cook and Peter Clayton, who were instrumental in the experimental component of this work. We also value the support of our colleagues at DPI Tatura for their assistance with development of ideas. Brian Berkowitz and three anonymous reviewers helped to improve the quality of this paper.