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Development And Analysis Of Input-Output Relations For Irrigation Water

Author

Listed:
  • Flinn, John C.
  • Musgrave, Warren F.

Abstract

Recent developments in climatology mean that economists now have a highly acceptable physical theory which can underlie their analysis of the economic aspects of water as an input to the production process, as a source of production instability, and as a major component of error in their estimated crop production functions. This paper presents a model and a procedure for synthesising and analysing irrigation water crop input output relations based on this theory. The importance of time of application of water as well as quantity is shown. Different frequencies of irrigation are optimal at different times of the growing season.

Suggested Citation

  • Flinn, John C. & Musgrave, Warren F., 1967. "Development And Analysis Of Input-Output Relations For Irrigation Water," Australian Journal of Agricultural Economics, Australian Agricultural and Resource Economics Society, vol. 11(1), pages 1-19, June.
  • Handle: RePEc:ags:ajaeau:22348
    DOI: 10.22004/ag.econ.22348
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    Cited by:

    1. Gallagher, Nicholas James, 2024. "Dynamic Programming Methods for Characterizing In-Season Farm Management Decisions," Dissertations and Theses 344827, Ekiti State University, Ado-Ekiti, Department of Agricultural Economics and Extension Services.
    2. Ajay Singh, 2014. "Irrigation Planning and Management Through Optimization Modelling," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 28(1), pages 1-14, January.
    3. Maji, Chandi Charan, 1975. "Intertemporal allocation of irrigation water in the Mayurakshi Project (India): an application of deterministic and chance-constrained linear programming," ISU General Staff Papers 197501010800006381, Iowa State University, Department of Economics.
    4. Mapp, Harry P., Jr. & Eidman, Vernon R., 1975. "Simulation Of Soil Water-Crop Yield Systems: The Potential For Economic Analysis," Southern Journal of Agricultural Economics, Southern Agricultural Economics Association, vol. 7(1), pages 1-7, July.
    5. Leaver, Rosemary, 2003. "Measuring The Supply Response Function Of Tobacco In Zimbabwe," 2003 Annual Conference, October 2-3, 2003, Pretoria, South Africa 19079, Agricultural Economics Association of South Africa (AEASA).
    6. Derek R. Byerlee & Jock R. Anderson, 1969. "Value Of Predictors Of Uncontrolled Factors In Response Functions," Australian Journal of Agricultural and Resource Economics, Australian Agricultural and Resource Economics Society, vol. 13(2), pages 118-127, December.
    7. Horowitz, Uri, 1974. "A dynamic model integrating demand and supply relationships for agricultural water, applied to determining optimal intertemporal allocation of water in a regional water project," ISU General Staff Papers 197401010800006990, Iowa State University, Department of Economics.

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    Keywords

    Resource /Energy Economics and Policy;

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