3 research outputs found

    Dynamique Hydro-Erosive Actuelle Des Bassins Versants Endoreiques De La Region De Niamey (Sud-Ouest Du Niger)

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    La gĂ©nĂ©ralisation du ravinement et la baisse de la productivitĂ© des terres sont quelques-unes des principales contraintes qui assaillent l’utilisation des sols au Sahel. Pour gĂ©rer efficacement ces sols, une Ă©valuation des processus hydro-Ă©rosifs est nĂ©cessaire. Ce travail a ainsi pour objectif d’analyser la dynamique hydro-Ă©rosive sur un site expĂ©rimental installĂ© depuis 2004 dans la rĂ©gion de Niamey (Niger). Sur ce site, le dispositif de mesure est composĂ© de huit parcelles de mesures de ruissellement et d’érosion, des stations hydromĂ©triques Ă  l’exutoire des deux bassins versants endorĂ©iques et de plusieurs piquets destinĂ©s aux suivis morpho-dynamiques des ravines. AprĂšs une dĂ©cennie d’observation, les ruissellements mesurĂ©s sur les parcelles se caractĂ©risent par une dynamique saisonniĂšre croissante sur les surfaces encroĂ»tĂ©es (croĂ»tes biologique et d’érosion) et dĂ©croissante sur les surfaces cultivĂ©es. Le coefficient de ruissellement varie de 5 % sur la surface cultivĂ©e Ă  58 % sur la croĂ»te d’érosion. Au cours des 10 annĂ©es de mesure, ce coefficient a connu une forte croissance en particulier sur la jachĂšre (+ 80 %) et sur la surface cultivĂ©e (+ 300 %), traduisant ainsi la dĂ©gradation des sols. A l’échelle des bassins versants, l’augmentation du coefficient de ruissellement s’accompagne d’une Ă©rosion arĂ©olaire qui dĂ©cape le sol Ă  une vitesse moyenne de 5 mm/an et d’une Ă©rosion linĂ©aire active, de l’ordre de 4 m3/an au niveau des ravines suivies. Les transferts sĂ©dimentaires qui en rĂ©sultent agissent sur le fonctionnement morpho-sĂ©dimentaire des cours d’eau. Des amĂ©nagements antiĂ©rosifs sont nĂ©cessaires pour dissiper les processus hydro-Ă©rosifs et prĂ©server les services Ă©cosystĂ©miques des sols des bassins. Widespread gullying and the declining land productivity are some of the main constraints plaguing land use in the Sahel. In order to effectively manage these soils, it has become necessary to assess the hydro-erosive processes. The current study, thus, aims at analyzing the hydro-erosion dynamics on an experimental site installed since 2004 in the Niamey region (Niger Republic). On this site, the measurement device is made up of eight runoff and erosion measurement plots, hydrometric stations at the outlet of the two endorheic watersheds and several stakes intended for morpho-dynamic monitoring of the gullies. After a decade of observation, the runoff measured on the plots is characterized by an increasing seasonal dynamic on encrusted surfaces (biological and erosion crusts) and a decreasing one on cultivated surfaces. The runoff coefficient varies from 5% on the cultivated area to 58% on the erosion crust. Over the 10 years of measurement, this coefficient has greatly increased, especially on the fallow (+ 80%) and on cultivated area (+ 300%); this increase consequently reflects soil degradation. At the watershed scale, the increase in the runoff coefficient is accompanied by area erosion (or the erosion of the area out of the basin) which strikes the soil at an average speed of 5 mm/year and active linear erosion measuring 4 m3/year as observed at the monitored (the ongoing investigated) gullies. The resulting sediment transfers act on the morpho-sedimentary functioning of rivers. Anti-erosion facilities are necessary to dissipate the hydro-erosive processes and preserve the ecosystem services of the soil in the basin

    Évolution des caractĂ©ristiques pluviomĂ©triques et recrudescence des inondations dans les localitĂ©s riveraines du fleuve Niger

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    In the middle Niger River, floods are becoming more frequent and dramatic. In recent years, major cities along the Niger River have seen historic floods, with significant material and human damage. Among the factors involved, include land-use changes that led to the change of surface conditions and increased runoff. To these is added the changing rainfall patterns. This paper provides an analysis of rainfall in the region over the period 1950-2013. The rainfall index calculated through the implementation RClimDex helped to highlight the changing characteristics and rainfall patterns that are causing increased flooding in these localities
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