Publications des scientifiques de l'IRD

Cantoni E., Tramblay Yves, Grimaldi S., Salamon P., Dakhlaoui H., Dezetter Alain, Thiemig V. (2022). Hydrological performance of the ERA5 reanalysis for flood modeling in Tunisia with the LISFLOOD and GR4J models. Journal of Hydrology : Regional Studies, 42, p. 101169 [15 p.].

Titre du document
Hydrological performance of the ERA5 reanalysis for flood modeling in Tunisia with the LISFLOOD and GR4J models
Année de publication
2022
Type de document
Article référencé dans le Web of Science WOS:000841020500001
Auteurs
Cantoni E., Tramblay Yves, Grimaldi S., Salamon P., Dakhlaoui H., Dezetter Alain, Thiemig V.
Source
Journal of Hydrology : Regional Studies, 2022, 42, p. 101169 [15 p.]
Study region: This study is focused on 6 catchments in Tunisia, in North Africa, under a semi-arid climate where daily river discharge and precipitation observations are available between 1992 and 2006.Study focus: The distributed hydrological model LISFLOOD has been compared with a lumped model, GR4J, to reproduce river runoff and floods, using observed rainfall interpolated from rain gauges and from the ERA5 reanalysis.New hydrological insights for the region under study: LISFLOOD and GR4J with their default pa-rameters have little skill in Tunisia, but when calibrated, both hydrological models provide similar performance to reproduce river discharge,with a mean KGE of 0.65 for GR4J driven by observed rainfall, and 0.59 with ERA5, and similarly a mean KGE of 0.59 for LISFLOOD driven by observed rainfall and 0.48 with ERA5. All model simulations perform very similarly using either observed rainfall data from rain gauges inter-polated over the basins or ERA5 rainfall, indicating its value as an alternative to observations in data-scarce areas such as Tunisia. The development of regional databases of river discharge ob-servations in North Africa could allow the calibration of such hydrological models on a larger scale for operational flood modeling and forecasting.
Plan de classement
Sciences fondamentales / Techniques d'analyse et de recherche [020] ; Hydrologie [062]
Description Géographique
TUNISIE
Localisation
Fonds IRD [F B010085962]
Identifiant IRD
fdi:010085962
Contact