Publications des scientifiques de l'IRD

Galle Sylvie, Ehrmann M., Peugeot Christophe. (1999). Water balance in a banded vegetation pattern : a case study of tiger bush in Western Niger. In : Valentin Christian (ed.), Poesen J. (ed.). The significance of soil, water and landscape processes in banded vegetation patterning. Catena, 37 (1-2), p. 197-216. ISSN 0341-8162.

Titre du document
Water balance in a banded vegetation pattern : a case study of tiger bush in Western Niger
Année de publication
1999
Type de document
Article référencé dans le Web of Science WOS:000081731000012
Auteurs
Galle Sylvie, Ehrmann M., Peugeot Christophe
In
Valentin Christian (ed.), Poesen J. (ed.), The significance of soil, water and landscape processes in banded vegetation patterning
Source
Catena, 1999, 37 (1-2), p. 197-216 ISSN 0341-8162
The tiger bush is a patterned woodland with alternating bare area and vegetated stripes. In Niger, it covers one third of the Sahelian zone. These natural forests are of considerable economical interest since they are the main source of livestock forage and domestic energy. Its sustainable exploitation needs improved understanding of its dynamics. The redistribution of water between thicket and intervening bare areas is decisive for the water supply of the vegetation. Tiger bush patterning replicates an elementary unit composed of a bare area, the upslope border, the core and the downslope margin of the thicket. (Each zone of tiger bush is characterised by specific soil crusting associated with vegetation). Both water storage and runoff have been monitored after each rain, over a period of 4 yr, including contrasting rainy seasons, on the different zones composing the tiger bush. On the three crusted zones, runoff has a piecewise linear relationship with rain : on closed plots, runoff yield vs. annual rainfall ratio reaches 54% on bare soil, 2% on upslope border and 18% on downslope border. The measured infiltration confirms these rates on independent plots. In the core of thicket, measured infiltration corresponds with the sum of the contributions of upslope zones, weighted by their relative lengths. This model predicts that bare area contributes up to 62% of the thicket supply, while direct rain is 27%, the senescence zone is 10% and the upslope border contribution is negligible (1%). The average water infiltration in the thicket is equal to 4 times the incident rainfall, but water redistribution is not homogeneous within the core of the thicket. By the most favourable location, infiltration depth is measured to be about 8 the rainfall... (D'après résumé d'auteur)
Plan de classement
Dynamique de l'eau à l'interface sol-plante-atmosphère [062MECEAU02] ; Formations végétales [082VEGET02]
Descripteurs
FORMATION VEGETALE ; DYNAMIQUE DE VEGETATION ; CARACTERISTIQUE HYDROLOGIQUE ; EQUILIBRE ; PLUIE ; ECOULEMENT ; INFILTRATION ; HUMIDITE DU SOL ; ETUDE DE CAS ; BROUSSE TIGREE
Description Géographique
NIGER ; ZONE SAHELIENNE
Localisation
Fonds IRD [F A010018923] ; Bondy
Identifiant IRD
fdi:010018928
Contact