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Coupled Surface-Subsurface Flow Model for Improved Basin Irrigation Management
Authors:D. Zerihun  A. Furman  A. W. Warrick  C. A. Sanchez
Affiliation:1Assistant Research Scientist, Dept. of Soil, Water, and Environmental Sciences, 429 Shantz Bldg. 38, Univ. of Arizona, 1200 E. Campus Dr., Tucson, AZ 85721. E-mail: dawit@ag.arizona.edu
2Institute of Soil, Water and Environmental Sciences, ARO-Volcani Center, P.O. Box 6, Bet Dagan 50250, Israel; formerly, Research Associate, Dept. of Hydrology and Water Resources, Univ. of Arizona, Tucson, AZ 85721.
3Professor, Dept. of Soil, Water, and Environmental Sciences, 429 Shantz Bldg. 38, Univ. of Arizona, 1200 E. Campus Dr., Tucson, AZ 85721.
4Professor, Dept. of Soil, Water, and Environmental Sciences and Director, Yuma Agricultural Center, Univ. of Arizona, 6425 W. 8th St., Yuma, AZ 85364.
Abstract:The availability of a process-based coupled surface-subsurface model can lead to improved surface irrigation/fertigation management practices. In this study, a one-dimensional zero-inertia model is coupled with a one-dimensional unsaturated zone water-flow model: HYDRUS-1D. A driver program is used to effect internal iterative coupling of the surface and subsurface flow models. Flow depths calculated using the surface-flow model are used as Dirichlet boundary conditions for the subsurface-flow model, and infiltration amounts calculated by the subsurface model are in turn used in surface-flow mass balance calculations. The model was tested by using field data collected at the University of Arizona, Yuma Mesa, research farm. The maximum mean absolute difference between field-observed and model-predicted advance is 2?min. Applications of the coupled model in improved irrigation management are highlighted. In addition, the significance of the effects of soil moisture redistribution on irrigation water availability to crops and the capability of the coupled model in tracking those changes in soil water status over time are discussed using examples.
Keywords:Surface irrigation  Irrigation practices  Coupling  Hydrologic models  Unsaturated flow  
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