<p>State-of-the-art climate models project a substantial decline in precipitation for the Mediterranean region in the future<sup><CitationRef CitationID="CR1">1</CitationRef></sup>. Supporting this notion, several studies based on observed precipitation data spanning recent decades have suggested a decrease in Mediterranean precipitation<sup><CitationRef AdditionalCitationIDS="CR3" CitationID="CR2">2</CitationRef>–<CitationRef CitationID="CR4">4</CitationRef></sup>, with some attributing a large fraction of this change to anthropogenic influences<sup><CitationRef CitationID="CR3">3</CitationRef>,<CitationRef CitationID="CR5">5</CitationRef></sup>. Conversely, certain researchers have underlined that Mediterranean precipitation exhibits considerable spatiotemporal variability driven by atmospheric circulation patterns<sup><CitationRef CitationID="CR6">6</CitationRef>,<CitationRef CitationID="CR7">7</CitationRef></sup> maintaining stationarity over the long term<sup><CitationRef CitationID="CR8">8</CitationRef>,<CitationRef CitationID="CR9">9</CitationRef></sup>. These conflicting perspectives underscore the need for a comprehensive assessment of precipitation changes in this region, given the profound social, economic and environmental implications. Here we show that Mediterranean precipitation has largely remained stationary&#xa0;from 1871 to 2020, albeit with significant multi-decadal and interannual variability. This conclusion is based on the most comprehensive dataset available for the region, encompassing over 23,000 stations across 27 countries. While trends can be identified for some periods and subregions, our findings attribute these trends primarily to atmospheric dynamics, which would be mostly linked to internal variability. Furthermore, our assessment reconciles the observed precipitation trends with Coupled Model Intercomparison Project Phase 6 model simulations, neither of which indicate a prevailing past precipitation trend in the region. The implications of our results extend to environmental, agricultural and water resources planning in one of the world’s prominent climate change hotspots<sup><CitationRef CitationID="CR10">10</CitationRef></sup>.</p>

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High temporal variability not trend dominates Mediterranean precipitation

  • Sergio M. Vicente-Serrano,
  • Yves Tramblay,
  • Fergus Reig,
  • José C. González-Hidalgo,
  • Santiago Beguería,
  • Michele Brunetti,
  • Ksenija Cindrić Kalin,
  • Leonardo Patalen,
  • Aleksandra Kržič,
  • Piero Lionello,
  • Miguel M. Lima,
  • Ricardo M. Trigo,
  • Ahmed M. El-Kenawy,
  • Ali Eddenjal,
  • Murat Türkes,
  • Aristeidis Koutroulis,
  • Veronica Manara,
  • Maurizio Maugeri,
  • Wafae Badi,
  • Shifa Mathbout,
  • Renato Bertalanič,
  • Lilia Bocheva,
  • Ismail Dabanli,
  • Alexandru Dumitrescu,
  • Brigitte Dubuisson,
  • Salah Sahabi-Abed,
  • Fayez Abdulla,
  • Abbas Fayad,
  • Sabina Hodzic,
  • Mirjana Ivanov,
  • Ivan Radevski,
  • Dhais Peña-Angulo,
  • Jorge Lorenzo-Lacruz,
  • Fernando Domínguez-Castro,
  • Luis Gimeno-Sotelo,
  • Ricardo García-Herrera,
  • Magí Franquesa,
  • Amar Halifa-Marín,
  • Maria Adell-Michavila,
  • Ivan Noguera,
  • David Barriopedro,
  • Jose M. Garrido-Perez,
  • Cesar Azorin-Molina,
  • Miguel Andres-Martin,
  • Luis Gimeno,
  • Raquel Nieto,
  • Maria Carmen Llasat,
  • Yannis Markonis,
  • Rabeb Selmi,
  • Soumaya Ben Rached,
  • Slavica Radovanović,
  • Jean-Michel Soubeyroux,
  • Aurélien Ribes,
  • Mohamed Elmehdi Saidi,
  • Siham Bataineh,
  • El Mahdi El Khalki,
  • Sayed Robaa,
  • Amina Boucetta,
  • Karam Alsafadi,
  • Nikos Mamassis,
  • Safwan Mohammed,
  • Beatriz Fernández-Duque,
  • Sorin Cheval,
  • Sara Moutia,
  • Aleksandra Stevkov,
  • Silvana Stevkova,
  • M. Yolanda Luna,
  • Vera Potopová

摘要

State-of-the-art climate models project a substantial decline in precipitation for the Mediterranean region in the future1. Supporting this notion, several studies based on observed precipitation data spanning recent decades have suggested a decrease in Mediterranean precipitation24, with some attributing a large fraction of this change to anthropogenic influences3,5. Conversely, certain researchers have underlined that Mediterranean precipitation exhibits considerable spatiotemporal variability driven by atmospheric circulation patterns6,7 maintaining stationarity over the long term8,9. These conflicting perspectives underscore the need for a comprehensive assessment of precipitation changes in this region, given the profound social, economic and environmental implications. Here we show that Mediterranean precipitation has largely remained stationary from 1871 to 2020, albeit with significant multi-decadal and interannual variability. This conclusion is based on the most comprehensive dataset available for the region, encompassing over 23,000 stations across 27 countries. While trends can be identified for some periods and subregions, our findings attribute these trends primarily to atmospheric dynamics, which would be mostly linked to internal variability. Furthermore, our assessment reconciles the observed precipitation trends with Coupled Model Intercomparison Project Phase 6 model simulations, neither of which indicate a prevailing past precipitation trend in the region. The implications of our results extend to environmental, agricultural and water resources planning in one of the world’s prominent climate change hotspots10.