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Groundwater Pumping by Heterogeneous Users

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  • Saak, Alexander E.
  • Peterson, Jeffrey M.

Abstract

Farm size is a significant determinant of both groundwater irrigated farm acreage and groundwater irrigation application rates per acre. This paper analyzes the patterns of groundwater exploitation when resource users in the area overlying a common aquifer are heterogeneous. In the presence of user heterogeneity, the common resource problem consists of inefficient dynamic and spatial allocation of groundwater because it impacts income distribution not only across periods but also across farmers. Under competitive allocation, smaller farmers pump groundwater faster if farmers have a constant marginal periodic utility of income. However, it is possible that larger farmers pump faster if the Arrow-Pratt coefficient of relative risk-aversion is sufficiently decreasing in wealth. A greater farm-size inequality may either moderate or amplify income inequality among farmers. Its effect on welfare depends on the curvature properties of the agricultural output function and the farmer utility of income. Also, it is shown that a flat-rate quota policy that limits the quantity of groundwater extraction per unit land may have unintended consequences for the income distribution among farmers.

Suggested Citation

  • Saak, Alexander E. & Peterson, Jeffrey M., 2007. "Groundwater Pumping by Heterogeneous Users," 2007 Annual Meeting, July 29-August 1, 2007, Portland, Oregon 9798, American Agricultural Economics Association (New Name 2008: Agricultural and Applied Economics Association).
  • Handle: RePEc:ags:aaea07:9798
    DOI: 10.22004/ag.econ.9798
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    Cited by:

    1. Kim, C.S. & Fuglie, Keith O. & Wallander, Steve & Wechsler, Seth, 2015. "Endogenous Technical Change and Groundwater Management: Revisiting the Gisser-Sanchez Paradox," 2015 AAEA & WAEA Joint Annual Meeting, July 26-28, San Francisco, California 205350, Agricultural and Applied Economics Association.
    2. Quintana Ashwell, Nicolas E. & Peterson, Jeffrey M. & Hendricks, Nathan P., 2018. "Optimal groundwater management under climate change and technical progress," Resource and Energy Economics, Elsevier, vol. 51(C), pages 67-83.
    3. Peterson, Jeffrey M. & Saak, Alexander E., 2013. "Spatial externalities in aquifers with varying thickness: Theory and numerical results for the Ogallala aquifer," 2013 Annual Meeting, August 4-6, 2013, Washington, D.C. 150553, Agricultural and Applied Economics Association.
    4. Rouhi Rad, Mani & Brozović, Nicholas & Foster, Timothy & Mieno, Taro, 2020. "Effects of instantaneous groundwater availability on irrigated agriculture and implications for aquifer management," Resource and Energy Economics, Elsevier, vol. 59(C).

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    Keywords

    Resource /Energy Economics and Policy;

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