Publications des scientifiques de l'IRD

Boithias Laurie, Sauvage S., Lenica A., Roux H., Abbaspour K. C., Larnier K., Dartus D., Sanchez-Perez J. M. (2017). Simulating flash floods at hourly time-step using the SWAT model. Water, 9 (12), p. art. 929 [25 p. ]. ISSN 2073-4441.

Titre du document
Simulating flash floods at hourly time-step using the SWAT model
Année de publication
2017
Type de document
Article référencé dans le Web of Science WOS:000419225500024
Auteurs
Boithias Laurie, Sauvage S., Lenica A., Roux H., Abbaspour K. C., Larnier K., Dartus D., Sanchez-Perez J. M.
Source
Water, 2017, 9 (12), p. art. 929 [25 p. ] ISSN 2073-4441
Flash floods are natural phenomena with environmental, social and economic impacts. To date, few numerical models are able to simulate hydrological processes at catchment scale at a reasonable time scale to describe flash events with accurate details. Considering a similar to 810 km(2) Mediterranean river coastal basin (southwestern France) as a study case, the objective of the present study was to assess the ability of the sub-daily module of the lumped Soil and Water Assessment Tool (SWAT) to simulate discharge (1) time-continuously, by testing two sub-basin delineation schemes, two catchment sizes, and two output time-steps; and (2) at flood time-scale, by comparing the performances of SWAT to the performances of the event-based fully distributed MARINE model when simulating flash flood events. We showed that there was no benefit of decreasing the size of the minimum drainage area (e.g., from similar to 15 km(2) down to similar to 1 km(2)) when delineating sub-basins in SWAT. We also showed that both the MARINE and SWAT models were equally able to reproduce peak discharge, flood timing and volume, and that they were both limited by rainfall and soil data. Hence, the SWAT model appears to be a reliable modelling tool to predict discharge over long periods of time in large flash-flood-prone basins.
Plan de classement
Sciences fondamentales / Techniques d'analyse et de recherche [020] ; Hydrologie [062]
Description Géographique
FRANCE ; ZONE MEDITERRANEENNE
Localisation
Fonds IRD [F B010071983]
Identifiant IRD
fdi:010071983
Contact