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March 28, 2026npj natural hazards.2 citationsOpen Access

Hydrological drought projections across Europe under climate change

FSFatimatuj Zohara SonnySMSogol MoradianAOAgnieszka I. Olbert

Key Points

  • The study aims to assess future hydrological drought dynamics across Europe under climate change.
  • Utilized the standardized runoff index (SRI) for analysis.
  • Examined historical (1990–2014) and near-future (2015–2049) periods.
  • Applied downscaled climate data from the Coupled Model Intercomparison Project Phase 6 (CMIP6).
  • Considered two emission scenarios: SSP1-2.6 and SSP5-8.5.
  • Drought conditions are projected to intensify, especially in southern Europe.
  • Increased frequency, severity, and spatial extent of drought events are noted.
  • Spring is identified as the most drought-prone season for both scenarios.
  • Countries like France, Spain, and the Balkans show significant impacts.

Abstract

Abstract Although drought is a natural hazard, growing global concern surrounds its increasing frequency and severity due to climate change. Projections indicate that drought conditions are expected to intensify worldwide in the future, and Europe is no exception. Therefore, understanding the pattern and characteristics of future drought is crucial to developing region-specific adaptation strategies to enhance resilience. This study presents a comprehensive assessment of future hydrological drought dynamics across Europe using the standardized runoff index (SRI). SRI was calculated at 1- and 3-month timescales for the historical period (1990–2014) and near-future period (2015–2049) based on downscaled climate data from Coupled Model Intercomparison Project Phase 6 (CMIP6) under two emission scenarios: SSP1-2.6 and SSP5-8.5, where SSP stands for shared socioeconomic pathways. The findings reveal an intensification of hydrological drought conditions, particularly in southern Europe. Notable increases in the frequency, severity, and spatial extent of drought events are observed, especially in countries such as France, Spain, and the Balkans. Seasonal analysis highlights spring as the most drought-prone season under both scenarios. These results underscore the urgent need for seasonally adaptive water management strategies to better anticipate future drought risks and strengthen regional resilience.

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Cite This Study

Sonny et al. (2026) studied this question.

synapsesocial.com/papers/69c771688bbfbc51511e14c9https://doi.org/10.1038/s44304-025-00152-w
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