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Modeling Extreme Meteorological Droughts From Paleo-Climatic Reconstructions: A Metastatistical Framework

Journal articles  - Journal Article
Caruso, MF; Peres, DJ; Cancelliere, A; Marani, M
Published in: Water Resources Research
April 1, 2025

Droughts have pervasive societal impacts and remain difficult to characterize observationally, due to the limited number of droughts sampled in instrumental records. One approach to improving the statistical basis of drought occurrence probability estimation is to extend the observational record using proxy climatic archives, such as those based on tree-ring information. Additionally, since droughts are rare and characterized by multiannual durations and inter-arrival times, it is important to devise and apply statistical techniques that make full use of available information to improve our ability to quantify the rarest droughts. We extract data from a publicly available tree-ring based Palmer Drought Severity Index (PDSI) data set, the Old World Drought Atlas, for two sites in Italy where long rainfall and temperature observational time series are leveraged for a meaningful comparison. Drought events are defined in terms of drought deficit volumes below a threshold PDSI value, and are studied through the Metastatistical Extreme Value Distribution (MEVD) to quantify the occurrence probability of extreme drought events. The estimation uncertainty associated with a variety of possible assumptions in MEVD analysis is studied, in specific comparison with the performance obtained using the traditional Generalized Extreme Value distribution, through a cross-validation methodology. Results suggest that MEVD-based formulations are more robust and flexible with respect to traditional ones. The combination of paleoclimatic data and methodologies capable of using most of the existing information provides more reliable estimates of drought recurrence times, which may be used to design more effective drought risk management plans.

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Published In

Water Resources Research

DOI

EISSN

1944-7973

ISSN

0043-1397

Publication Date

April 1, 2025

Volume

61

Issue

4

Related Subject Headings

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

Citation

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Caruso, M. F., Peres, D. J., Cancelliere, A., & Marani, M. (2025). Modeling Extreme Meteorological Droughts From Paleo-Climatic Reconstructions: A Metastatistical Framework. Water Resources Research, 61(4). https://doi.org/10.1029/2024WR038640
Caruso, M. F., D. J. Peres, A. Cancelliere, and M. Marani. “Modeling Extreme Meteorological Droughts From Paleo-Climatic Reconstructions: A Metastatistical Framework.” Water Resources Research 61, no. 4 (April 1, 2025). https://doi.org/10.1029/2024WR038640.
Caruso MF, Peres DJ, Cancelliere A, Marani M. Modeling Extreme Meteorological Droughts From Paleo-Climatic Reconstructions: A Metastatistical Framework. Water Resources Research. 2025 Apr 1;61(4).
Caruso, M. F., et al. “Modeling Extreme Meteorological Droughts From Paleo-Climatic Reconstructions: A Metastatistical Framework.” Water Resources Research, vol. 61, no. 4, Apr. 2025. Scopus, doi:10.1029/2024WR038640.
Caruso MF, Peres DJ, Cancelliere A, Marani M. Modeling Extreme Meteorological Droughts From Paleo-Climatic Reconstructions: A Metastatistical Framework. Water Resources Research. 2025 Apr 1;61(4).
Journal cover image

Published In

Water Resources Research

DOI

EISSN

1944-7973

ISSN

0043-1397

Publication Date

April 1, 2025

Volume

61

Issue

4

Related Subject Headings

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