How might climate change affect river flows across West Africa?

Author:

Rameshwaran PonnambalamORCID,Bell Victoria A.ORCID,Davies Helen N.ORCID,Kay Alison L.ORCID

Abstract

AbstractWest Africa and its semi-arid Sahelian region are one of the world’s most vulnerable regions to climate change with a history of extreme climate variability. There is still considerable uncertainty as to how projected climate change will affect precipitation at local and regional scales and the consequent impact on river flows and water resources across West Africa. Here, we aim to address this uncertainty by configuring a regional-scale hydrological model to West Africa. The model (hydrological modelling framework for West Africa—HMF-WA) simulates spatially consistent river flows on a 0.1° × 0.1° grid (approximately 10 km × 10 km) continuously across the whole domain and includes estimates of anthropogenic water use, wetland inundation, and local hydrological features such as endorheic regions. Regional-scale hydrological simulations driven by observed weather data are assessed against observed flows before undertaking an analysis of the impact of projected future climate scenarios from the CMIP5 on river flows up to the end of the twenty-first century. The results indicate that projected future changes in river flows are highly spatially variable across West Africa, particularly across the Sahelian region where the predicted changes are more pronounced. The study shows that median peak flows are projected to decrease by 23% in the west (e.g. Senegal) and increase by 80% in the eastern region (e.g. Chad) by the 2050s. The projected reductions in river flows in western Sahel lead to future droughts and water shortages more likely, while in the eastern Sahel, projected increases lead to future frequent floods.

Funder

Natural Environment Research Council

Publisher

Springer Science and Business Media LLC

Subject

Atmospheric Science,Global and Planetary Change

Reference89 articles.

1. Aich V, Liersch S, Vetter T, Huang S, Tecklenburg J, Hoffmann P, Koch H, Fournet S, Krysanova V, Müller EN, Hattermann FF (2014) Comparing impacts of climate change on streamflow in four large African river basins. Hydrol Earth Syst Sci 18:1305–1321

2. Albergel J (1987) Sécheresse, désertification et ressources en eau de surface : application aux petits bassins du Burkina Faso. The Influence of Climate Change and Climatic Variability on the Hydrologic Regime and Water Resources. IAHS Publication No 168, Wallingford, pp. 355 365

3. Amani A, Nguetora M (2002) Evidence d’une modification du régime hydrologique du fleuve Niger à Niamey. FRIEND 2002 Regional Hydrology: Bridging the Gap between Research and Practice, Proceedings of the Friend Conference, Cape Town, South Africa, 18–22 March, 2002; Van Lannen, H., Demuth, S., Eds, IAHS publication No 274, Wallingford, UK:449–456

4. Amogu O, Descroix L, Yéro KS, Le Breton E, Mamadou I, Ali A, Vischel T, Bader J-C, Moussa IB, Gautier E, Boubkraoui S, Belleudy P (2010) Increasing River Flows in the Sahel? Water 2:170–199

5. Amogu O, Esteves M, Vandervaere JP, Malam Abdou M, Panthou G, Rajot JL, Souley Yéro K, Boubkraoui S, Lapetite JM, Dessay N, Zin I, Bachir A, Bouzou Moussa I, Faran Maïga O, Gautier E, Mamadou I, Descroix L (2015) Runoff evolution due to land-use change in a small Sahelian catchment. Hydrol Sci J 60:78–95

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