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Estimation of Extreme Floods Using a Statistical and Conceptual Model of the Hydrological Response

Journal articles  - Journal Article
Devò, P; Basso, S; Marani, M
Published in: Water Resources Research
May 1, 2025

The robust estimation of flood peak discharge values is critical for designing mitigation measures and increasing preparedness to natural hazards. Traditional flood estimation methods are, however, severely limited by data series shorter than the return period of interest, as they only use annual maxima or a few values above a high threshold. Here we couple two recent advances in flood estimation from short data samples, namely the Metastatistical Extreme Value Distribution (MEVD) and a conceptual model of flood generation processes, the Physically based Extreme Value (PhEV) distribution of river flows. The result is a methodology, defined through a few hydrologic attributes describing runoff generation and catchment response, to estimate extreme discharge in poorly gauged basins, which we test on data from 178 catchments in Germany. We find that extremes are best estimated when PhEV runoff-generation parameters are set using the long-term mean discharge and precipitation depth, while catchment response parameters are estimated by statistical fitting to observed peak streamflow values. This estimation method interestingly outperforms a methodology in which all parameters are tuned to optimize the reproduction of the statistics of observed peak streamflow values. Our results show that the median relative error associated with MEVD-PhEV, across the large data set explored, consistently remains between −50% and +50%. Hence, MEVD-PhEV yields useful estimates of extreme flows with limited observational information and with no need of preselecting a suitable distribution for ordinary peak discharge values, a step that is substituted by the inclusion of catchment hydrologic information.

Duke Scholars

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Published In

Water Resources Research

DOI

EISSN

1944-7973

ISSN

0043-1397

Publication Date

May 1, 2025

Volume

61

Issue

5

Related Subject Headings

  • Environmental Engineering
  • 4011 Environmental engineering
  • 4005 Civil engineering
  • 3707 Hydrology
 

Citation

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Devò, P., Basso, S., & Marani, M. (2025). Estimation of Extreme Floods Using a Statistical and Conceptual Model of the Hydrological Response. Water Resources Research, 61(5). https://doi.org/10.1029/2024WR038667
Devò, P., S. Basso, and M. Marani. “Estimation of Extreme Floods Using a Statistical and Conceptual Model of the Hydrological Response.” Water Resources Research 61, no. 5 (May 1, 2025). https://doi.org/10.1029/2024WR038667.
Devò P, Basso S, Marani M. Estimation of Extreme Floods Using a Statistical and Conceptual Model of the Hydrological Response. Water Resources Research. 2025 May 1;61(5).
Devò, P., et al. “Estimation of Extreme Floods Using a Statistical and Conceptual Model of the Hydrological Response.” Water Resources Research, vol. 61, no. 5, May 2025. Scopus, doi:10.1029/2024WR038667.
Devò P, Basso S, Marani M. Estimation of Extreme Floods Using a Statistical and Conceptual Model of the Hydrological Response. Water Resources Research. 2025 May 1;61(5).
Journal cover image

Published In

Water Resources Research

DOI

EISSN

1944-7973

ISSN

0043-1397

Publication Date

May 1, 2025

Volume

61

Issue

5

Related Subject Headings

  • Environmental Engineering
  • 4011 Environmental engineering
  • 4005 Civil engineering
  • 3707 Hydrology