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Estimating groundwater withdrawals in areas of intensive agricultural pumping in central Spain

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  • Martínez-Santos, P.
  • Martínez-Alfaro, P.E.

Abstract

Measuring groundwater extractions is central to adequate groundwater management in agricultural basins. Groundwater pumping records are often subject to considerable uncertainties, particularly in the case of arid and semiarid settings where irrigation is the most important water use. In most cases this is due to the difficulties involved in locating and monitoring all wells. We describe the estimation of groundwater pumping by coupling the water table fluctuation method with the groundwater balance equation. This is demonstrated through its application to the Mancha Occidental aquifer, Spain, an area subject to intensive pumping for irrigation since the early 1970s. A sensitivity analysis is conducted to evaluate the effect of relevant hydrogeological parameters, namely specific yield, as well as the most appropriate theoretical semivariogram, to calculate yearly storage variations within the system. Results are validated in the light of official pumping estimates.

Suggested Citation

  • Martínez-Santos, P. & Martínez-Alfaro, P.E., 2010. "Estimating groundwater withdrawals in areas of intensive agricultural pumping in central Spain," Agricultural Water Management, Elsevier, vol. 98(1), pages 172-181, December.
  • Handle: RePEc:eee:agiwat:v:98:y:2010:i:1:p:172-181
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    1. Cho, J. & Barone, V.A. & Mostaghimi, S., 2009. "Simulation of land use impacts on groundwater levels and streamflow in a Virginia watershed," Agricultural Water Management, Elsevier, vol. 96(1), pages 1-11, January.
    2. Turral, Hugh & Fullagar, I., 2007. "Institutional directions in groundwater management in Australia," Book Chapters,, International Water Management Institute.
    3. Martin de Santa Olalla, F. & Calera, A. & Dominguez, A., 2003. "Monitoring irrigation water use by combining Irrigation Advisory Service, and remotely sensed data with a geographic information system," Agricultural Water Management, Elsevier, vol. 61(2), pages 111-124, June.
    4. Turral, Hugh & Fullagar, I., 2007. "Institutional directions in groundwater management in Australia," IWMI Books, Reports H040053, International Water Management Institute.
    5. Shah, Tushaar & Bhatt, Sonal & Shah, R.K. & Talati, Jayesh, 2008. "Groundwater governance through electricity supply management: Assessing an innovative intervention in Gujarat, western India," Agricultural Water Management, Elsevier, vol. 95(11), pages 1233-1242, November.
    6. Calera Belmonte, A. & Medrano Gonzalez, J. & Vela Mayorga, A. & Castano Fernandez, S., 1999. "GIS tools applied to the sustainable management of water resources: Application to the aquifer system 08-29," Agricultural Water Management, Elsevier, vol. 40(2-3), pages 207-220, May.
    7. Xu, Yueqing & Mo, Xingguo & Cai, Yunlong & Li, Xiubin, 2005. "Analysis on groundwater table drawdown by land use and the quest for sustainable water use in the Hebei Plain in China," Agricultural Water Management, Elsevier, vol. 75(1), pages 38-53, July.
    8. Kamra, S. K. & Lal, Khajanchi & Singh, O. P. & Boonstra, J., 2002. "Effect of pumping on temporal changes in groundwater quality," Agricultural Water Management, Elsevier, vol. 56(2), pages 169-178, July.
    9. Ambast, S.K. & Tyagi, N.K. & Raul, S.K., 2006. "Management of declining groundwater in the Trans Indo-Gangetic Plain (India): Some options," Agricultural Water Management, Elsevier, vol. 82(3), pages 279-296, April.
    10. Giordano, Mark & Villholth, Karen, 2007. "The agricultural groundwater revolution: opportunities and threats to development," IWMI Books, Reports H040039, International Water Management Institute.
    11. Mukherji, Aditi, 2007. "The energy-irrigation nexus and its impact on groundwater markets in eastern Indo-Gangetic basin: Evidence from West Bengal, India," Energy Policy, Elsevier, vol. 35(12), pages 6413-6430, December.
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