Articles | Volume 20, issue 10
https://doi.org/10.5194/hess-20-4159-2016
https://doi.org/10.5194/hess-20-4159-2016
Research article
 | 
13 Oct 2016
Research article |  | 13 Oct 2016

Using an integrated hydrological model to estimate the usefulness of meteorological drought indices in a changing climate

Diane von Gunten, Thomas Wöhling, Claus P. Haslauer, Daniel Merchán, Jesus Causapé, and Olaf A. Cirpka

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Cited articles

Abrahao, R., Causapé, J., García-Garizábal, I., and Merchán, D.: Implementing irrigation: Water balances and irrigation quality in the Lerma basin (Spain), Agr. Water Manage., 102, 97–104, 2011.
Agwata, J.: A review of some indices used for drought studies, Civil and Environmental Research, 6, 14–21, 2014.
Allen, R., Pereira, L., Raes, D., and Smith, M.: Crop evapotranspiration (guidelines for computing crop water requirements), FAO irrigation and drainage paper 56, 333 pp., 1998.
Bachmair, S., Kohn, I., and Stahl, K.: Exploring the link between drought indicators and impacts, Nat. Hazards Earth Syst. Sci., 15, 1381–1397, https://doi.org/10.5194/nhess-15-1381-2015, 2015.
Beltrán, A.: Estudio de los suelos de la zona regable de Bardenas II. Sectores VIII, IX, X, XII y XIII, Instituto Nacional de Reforma y Desarrollo Agrario, Ministerio de Agricultura, Pesca y Alimentación, 1986.
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Short summary
We compare seven meteorological drought indices that are commonly used to predict future droughts. Our goal is to assess the reliability of these indices to predict hydrological impacts of droughts under changing climatic conditions, using an integrated hydrological model. Drought indices are able to identify the timing of hydrological impacts of droughts in present and future climate. However, these indices can not estimate the severity of hydrological impacts of droughts in future climate.