Case Studies
Feb 20, 2019

Optimal Water Allocation under Deficit Irrigation in the Context of Colorado Water Law

Publication: Journal of Irrigation and Drainage Engineering
Volume 145, Issue 5

Abstract

The common belief is that there are opportunities in the agricultural sector to use less irrigation water and thus make saved water available for municipal and industrial uses. The key is for farmers to maximize farm profit through optimizing water allocation between on-farm production and off-farm leases. A model to optimize water allocation for a single farm and crop using crop water production functions and the concept of deficit irrigation is presented in this paper. Using this model, optimal water allocation was determined based on maize and sunflower water productivity data collected during 2008–2011 growing seasons in eastern Colorado. According to the region’s water leasing and yield prices during 2010–2016, deficit irrigation does improve farm income at moderate to high leasing prices. When crop prices are low relative to leasing prices, leasing all the available water and fallowing or planting unirrigated crops provides the highest income. The model can define the crop and water leasing prices for which deficit irrigation is worthwhile.

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References

Ag Water NetWORK. 2016. 2016 Ag Water right holder survey results summary. Arvada, CO: Ag Water NetWORK.
Allen, R. G., L. S. Pereira, D. Raes, and M. Smith. 1998. Crop evapotranspiration: Guidelines for computing crop water requirements. Rome: Food and Agriculture Organization of the United Nations.
Castle, A. J., and L. J. MacDonnell. 2016. An enhanced water bank for Colorado. Boulder, CO: Getches-Wilkinson Center for Natural Resources, Energy and the Environment, Univ. of Colorado Law School.
Colorado Agricultural Meteorological Network. 2017. “CoAgMet.” Accessed February 25, 2017. http://coagmet.com.
Colorado State University Extension. 2017. “Crop enterprise budgets northeastern Colorado.” Accessed September 20, 2016. http://wr.colostate.edu/ABM/cropbudgets.shtml.
Colorado Water Conservation Board. 2015. Colorado’s Water Plan. Denver: Colorado Water Conservation Board.
Colorado Water Conservation Board. 2016. Criteria and guidelines for fallowing-leasing pilot projects. Denver: Colorado Water Conservation Board.
De Wit, C. 1958. Transpiration and crop yields. Wageningen, Netherlands: Institute of Biological and Chemical Research on Field Crops and Herbage.
Devine, B. 2015. “Moving waters: The legacy of buy-and-dry and the challenge of lease-fallowing in Colorado’s Arkansas River basin.” M.S. thesis, Dept. of Environmental Studies, Univ. of Colorado Boulder.
Doorenbos, J., and A. H. Kassam. 1979. Yield response to water. Rome: Food and Agriculture Organization of the United Nations.
English, M. 1990. “Deficit irrigation. I: Analytical framework.” J. Irrig. Drain. Eng. 116 (3): 399–412. https://doi.org/10.1061/(ASCE)0733-9437(1990)116:3(399).
Fereres, E., and M. A. Soriano. 2007. “Deficit irrigation for reducing agricultural water use.” J. Exp. Bot. 58 (2): 147–159. https://doi.org/10.1093/jxb/erl165.
Geerts, S., and D. Raes. 2009. “Deficit irrigation as an on-farm strategy to maximize crop water productivity in dry areas.” Agric. Water Manage. 96 (9): 1275–1284. https://doi.org/10.1016/j.agwat.2009.04.009.
Griffin, R. C. 2006. Water resource economics: The analysis of scarcity, policies, and projects. Cambridge, MA: MIT Press.
Hexem, R. W., and E. O. Heady. 1978. Water production functions for irrigated agriculture. Ames, IA: Iowa State University Press.
Jensen, M. E. 1968. “Water consumption by agricultural plants.” In Vol. 2 of Water deficits and plant growth, edited by T. T. Kozlowski, 1–20. New York: Academic Press.
Jones, P. A., and T. Cech. 2009. Colorado water law for non-lawyers. Boulder, CO: University of Colorado Press.
Kenney, D. 2015. Improving the viability of alternative water transfer methods (ATMs) in Colorado: A synthesis of research and findings from the Getches-Wilkinson Center, 2014-2015. Boulder, CO: Getches-Wilkinson Center for Natural Resources, Energy and the Environment, Univ. of Colorado Law School.
Kisekka, I., T. E. Oker, J. P. Aguilar, and D. H. Rogers. 2017. “Mobile drip irrigation evaluation in corn.” In Proc., 29th Annual Central Plains Irrigation Conf., 35–44. Manhattan, KS: Kansas State Univ. Northwest Research Extension Center.
MacDonnell, L. J. 2015. Navigating a pathway toward Colorado’s water future: A review and recommendations on Colorado’s draft water plan. Boulder, CO: Getches-Wilkinson Center for Natural Resources, Energy and the Environment, Univ. of Colorado Law School.
Ott, L., and M. Longnecker. 2008. An introduction to statistical methods and data analysis. Boston: Cengage Learning.
PRISM Climate Group. 2015. “30-year normals.” Oregon State Univ. Accessed September 20, 2016. http://prism.nacse.org/normals/.
Pritchett, J., J. Thorvaldson, and M. Frasier. 2008. “Water as a crop: Limited irrigation and water leasing in Colorado.” Rev. Agric. Econ. 30 (3): 435–444. https://doi.org/10.1111/j.1467-9353.2008.00417.x.
Rudnick, D., et al. 2017. “Deficit irrigation management of corn in the high plains: A review.” In Proc., 29th Annual Central Plains Irrigation Conf., 66–84. Manhattan, KS: Kansas State Univ. Northwest Research Extension Center.
Solomon, K. H. 1985. “Typical crop water production functions.” In Proc., Winter Meeting of American Society of Agricultural Engineers, 19. St. Joseph, MI: American Society of Agricultural Engineers.
Tanner, C. B., and T. R. Sinclair. 1983. “Efficient water use in crop production: Research or re-search?” In Limitations to efficient water use in crop production, edited by H. M. Taylor, W. R. Jordan, and T. R. Sinclair, 267–276. Madison, MD: American Society of Agronomy, Crop Science Society of America, Soil Science Society of America.
Task Committee on Standardization of Reference Evapotranspiration. 2005. The ASCE standardized reference evapotranspiration equation. edited by R. G. Allen, I. A. Walter, R. L. Elliott, T. A. Howell, D. Itenfisu, M. E. Jensen, and R. L. Snyder. Reston, VA: ASCE.
Trout, T. J., and W. C. Bausch. 2016. USDA-ARS Colorado maize water productivity dataset 2008–2011. Fort Collins, CO: Ag Data Commons.
Trout, T. J., and K. C. DeJonge. 2017. “Water productivity of maize in the US high plains.” Irrig. Sci. 35 (3): 251–266. https://doi.org/10.1007/s00271-017-0540-1.
Trout, T. J., and K. C. DeJonge. 2018. “Crop water use and crop coefficients of maize in the Great Plains.” J. Irrig. Drain. Eng. 144 (6): 04018009. https://doi.org/10.1061/(ASCE)IR.1943-4774.0001309.
WestWater Research LLC. 2016. “Colorado’s South Platte basin water rights market.” Water Market Insider. 1–4.

Information & Authors

Information

Published In

Go to Journal of Irrigation and Drainage Engineering
Journal of Irrigation and Drainage Engineering
Volume 145Issue 5May 2019

History

Received: Feb 16, 2018
Accepted: Oct 4, 2018
Published online: Feb 20, 2019
Published in print: May 1, 2019
Discussion open until: Jul 20, 2019

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Authors

Affiliations

Manijeh Mahmoudzadeh Varzi [email protected]
Formerly, Ph.D. Candidate, Dept. of Civil and Environmental Engineering, Colorado State Univ., 1372 Campus Delivery, Fort Collins, CO 80523 (corresponding author). Email: [email protected]
Thomas J. Trout, F.ASCE [email protected]
Agricultural Engineer, USDA-ARS Water Management and Systems Research Unit, 2150 Center Ave., Fort Collins, CO 80526. Email: [email protected]
Kendall C. DeJonge [email protected]
Agricultural Engineer, USDA-ARS Water Management and Systems Research Unit, 2150 Center Ave., Fort Collins, CO 80526. Email: [email protected]
Ramchand Oad [email protected]
Professor, Dept. of Civil and Environmental Engineering, Colorado State Univ., 1372 Campus Delivery, Fort Collins, CO 80523. Email: [email protected]

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