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Publication Additional Information Download
Publication Type
Journal Article
Authorship
Grimaldi, S., Volpi, E., Langousis, A., Michael Papalexiou, S., Luciano De Luca, D., Piscopia, R., et al.
Title
Continuous hydrologic modelling for small and ungauged basins: A comparison of eight rainfall models for sub-daily runoff simulations
Year
2022
Publication Outlet
Journal of Hydrology, 610, 127866
DOI
https://doi.org/10.1016/j.jhydrol.2022.127866
Citation
Grimaldi, S., Volpi, E., Langousis, A., Michael Papalexiou, S., Luciano De Luca, D., Piscopia, R., et al. (2022). Continuous hydrologic modelling for small and ungauged basins: A comparison of eight rainfall models for sub-daily runoff simulations. Journal of Hydrology, 610, 127866. https://doi.org/10.1016/j.jhydrol.2022.127866
Abstract
Continuous hydrologic modelling is a natural evolution of the event-based design approach in modern hydrology. It improves the rainfall-runoff transformation and provides the practitioner with more effective hydrological output information for risk assessment. However, this approach is still not widely adopted, mainly because the choice of the most appropriate rainfall simulation model (which is the core of continuous frameworks) for the specific aim of risk analysis has not been sufficiently investigated. In this paper, we test eight rainfall models by evaluating the performances of the simulated rainfall time series when used as input for a simplified continuous rainfall-runoff model, the COSMO4SUB, which is particularly designed for small and ungauged basins. The comparison confirms the capability of all models to provide realistic flood events and allows identifying the models to be further improved and tailored for data-scarce hydrological risk applications. The suggested framework is transferable to any catchment while different hydrologic and rainfall models can be used.
Program Affiliations
GWF: Global Water Futures
Publication Stage
Published
Additional Information
Papalexiou, Simon-Michael , Refereed Publications
Download Links
https://doi.org/10.1016/j.jhydrol.2022.127866
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