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Estimating the role of a ditch network in groundwater recharge in a Mediterranean catchment using a water balance approach
Authors:C. Dages, M. Voltz, A. Bsaibes, L. Pr  vot, O. Huttel, X. Louchart, F. Garnier,S. Negro
Affiliation:aINRA, Laboratoire d’Etude des Interactions Sol, Agrosystème, Hydrosystème, UMR SupAgro INRA IRD, Place Viala, 34060 Montpellier Cedex 1, France
Abstract:Water balance variables were monitored in a farmed Mediterranean catchment characterized by a dense ditch network to allow for the separate estimation of the diffuse and concentrated recharge terms during flood events. The 27 ha central part of the catchment was equipped with (i) rain gauges, (ii) ditch gauge stations, (iii) piezometers, (iv) neutron probes, and (v) an eddy covariance mast including a 3D sonic anemometer and a fast hygrometer. The water balance was calculated for two autumnal rain and flood events. We also estimated the uncertainty of this approach with Monte Carlo simulations. Results show, that although ditch area represents only 6% of the total study area, concentrated recharge appeared to be the main source of groundwater recharge. Indeed, it was 40–50% of the total groundwater recharge for autumnal events, which are the major annual recharge events. This indicate that both, concentrated and diffuse recharge should be taken into account in any hydrological modeling approach for Mediterranean catchments. This also means that, since they collect overland flow that is often largely contaminated by chemicals, ditches may be a place where groundwater contamination is likely to occur. The uncertainty analysis indicates that recharge estimates based on water balance exhibit large uncertainty ranges. Nevertheless, Monte Carlo simulations showed that concentrated recharge was higher than expected based on their area.
Keywords:Groundwater/surface water interaction   Diffuse recharge   Concentrated recharge   Ditches   Uncertainty assessment   Hydrological budget
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