Publications des scientifiques de l'IRD

Tabsoba M., Hector Basile, Cohard J. M., Vandervaere J. P., Warzagan A. I., Peugeot Christophe. (2026). How sustainable land management practices may impact water resources in the Sahel : insights from an integrated critical zone modelling approach. Journal of Hydrology : Regional Studies, 66, p. 103633 [18 p.].

Titre du document
How sustainable land management practices may impact water resources in the Sahel : insights from an integrated critical zone modelling approach
Année de publication
2026
Type de document
Article référencé dans le Web of Science WOS:001798200700001
Auteurs
Tabsoba M., Hector Basile, Cohard J. M., Vandervaere J. P., Warzagan A. I., Peugeot Christophe
Source
Journal of Hydrology : Regional Studies, 2026, 66, p. 103633 [18 p.]
Study region: The study was conducted in the south-western Sahel of Niger, within a small experimental catchment of the AMMA-CATCH observatory characterized by degraded soils, short high-intensity rainfall events, and increasing implementation of sustainable land management (SLM) practices such as micro-dams. Study Focus: This study investigates the hydrological impacts of SLM practices on runoff generation, soil water storage, and groundwater recharge using the integrated hydrological model ParFlow-CLM combined with field observations. The model was first calibrated under preintervention conditions using event-based runoff observations. Micro-dams were then introduced using equivalent Manning roughness coefficients calibrated against observations to represent their hydraulic effects on a Sahelian hillslope. New hydrological insights for the region: Results show that the model reproduces the observed reduction in event-based runoff induced by SLM practices. Under the 8% managed-area scenario, corresponding to the 8% field implementation stage (0.64 ha over the modeled 8 ha hillslope), runoff coefficients decreased from 0.24 to 0.13 in observations and from 0.25 to 0.17 in simulations. Simulations also indicate enhanced infiltration and increased event-based soil water storage in the upper soil profile, reducing soil moisture stress during dry periods. Simulations suggest that hillslope-scale, diffuse groundwater recharge increased from about 15-17% of annual rainfall, while hillslope-scale runoff declined from 15% to 9%. These findings highlight the potential of SLM interventions to improve water availability and hydrological resilience in Sahelian environments.
Plan de classement
Sciences fondamentales / Techniques d'analyse et de recherche [020] ; Sciences du milieu [021] ; Hydrologie [062]
Description Géographique
NIGER ; ZONE SAHELIENNE
Localisation
Fonds IRD [F B010097437]
Identifiant IRD
fdi:010097437
Contact
  • Coordonnées :
    Mission Science Ouverte (MSO)
    IRD - Délégation régionale Île-de-France & Ouest
    Campus Condorcet - Hôtel à projets
    8 cours des Humanités - 93322 Aubervilliers Cedex
    Horizon Pleins textes
    Aide
  •