Extratropical circulation associated with Mediterranean droughts during the Last Millennium in CMIP5 simulations

<p>The Mediterranean region is expected to experience significant changes in hydroclimate, reflected in increases in the duration and severity of soil moisture droughts. While numerous studies have explored Mediterranean droughts in coupled climate models under present and future scenarios, un...

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Main Authors: W. M. Kim, S. J. González-Rojí, C. C. Raible
Format: Article
Language:English
Published: Copernicus Publications 2023-12-01
Series:Climate of the Past
Online Access:https://cp.copernicus.org/articles/19/2511/2023/cp-19-2511-2023.pdf
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author W. M. Kim
W. M. Kim
W. M. Kim
S. J. González-Rojí
S. J. González-Rojí
C. C. Raible
C. C. Raible
author_facet W. M. Kim
W. M. Kim
W. M. Kim
S. J. González-Rojí
S. J. González-Rojí
C. C. Raible
C. C. Raible
author_sort W. M. Kim
collection DOAJ
description <p>The Mediterranean region is expected to experience significant changes in hydroclimate, reflected in increases in the duration and severity of soil moisture droughts. While numerous studies have explored Mediterranean droughts in coupled climate models under present and future scenarios, understanding droughts in past-climate simulations remains relatively underexplored. Such simulations can offer insights into long-term drought variability that observational records cannot capture. Therefore, our study investigates circulation patterns in the Euro-Atlantic domain associated with multi-year soil moisture droughts over the Mediterranean region during the last millennium (850–2005 CE) in climate simulations. For this, we use the fifth phase of the Climate Model Intercomparison Project–Paleoclimate Model Intercomparison Project Phase 3 (CMIP5–PMIP3) and the CESM Last Millennium Ensemble Project. Primarily, we examine the differences among the models in representing drought variability and related circulation patterns. For the analysis, we exclude the anthropogenic trends from 1850–2005 CE, and to detect the circulation patterns, we perform <span class="inline-formula"><i>k</i></span>-means clustering combined with linear correlation analyses.</p> <p>The findings confirm that Mediterranean drought occurrence during the last millennium is associated with internal variability in the climate system. Drought variability, the associated circulation patterns, and the frequencies of these patterns vary across the models. Some climate models exhibit a multidecadal anti-phase occurrence of some drought periods between the western and eastern Mediterranean regions, although the exact periods of coherence differ among the models. This anti-phase co-variability, which agrees with some proxy records, can be explained by the dominant circulation patterns in each region detected by the models: western Mediterranean droughts are dominated by a high-pressure system over central Europe and a North Atlantic Oscillation (NAO)-like pattern, while eastern Mediterranean droughts are linked to positive pressure anomalies in the southern and eastern Mediterranean and negative NAO, East Atlantic, and East Atlantic–western Russia-like patterns. The frequencies of these modes of climate variability are strongly model-dependent; i.e., some patterns occur more frequently or only in some models, suggesting that the main drivers of droughts differ among the models. Although it is complicated to evaluate the representation of droughts and associated circulation among the models, in general, the models with lower horizontal and vertical spatial land resolutions exhibit drought variability and patterns that distinctly differ from other models. These model differences and preferences toward some circulation patterns can be a source of uncertainties in the model–proxy comparison of Mediterranean droughts and potentially influence future climate projections.</p>
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spelling doaj.art-19bd07313ab44f1c892ac74b08a537d22023-12-12T08:47:08ZengCopernicus PublicationsClimate of the Past1814-93241814-93322023-12-01192511253310.5194/cp-19-2511-2023Extratropical circulation associated with Mediterranean droughts during the Last Millennium in CMIP5 simulationsW. M. Kim0W. M. Kim1W. M. Kim2S. J. González-Rojí3S. J. González-Rojí4C. C. Raible5C. C. Raible6Climate and Environmental Physics, University of Bern, Bern, SwitzerlandOeschger Centre for Climate Change Research, University of Bern, Bern, Switzerlandnow at: National Center for Atmospheric Research, Boulder, Colorado, United StatesClimate and Environmental Physics, University of Bern, Bern, SwitzerlandOeschger Centre for Climate Change Research, University of Bern, Bern, SwitzerlandClimate and Environmental Physics, University of Bern, Bern, SwitzerlandOeschger Centre for Climate Change Research, University of Bern, Bern, Switzerland<p>The Mediterranean region is expected to experience significant changes in hydroclimate, reflected in increases in the duration and severity of soil moisture droughts. While numerous studies have explored Mediterranean droughts in coupled climate models under present and future scenarios, understanding droughts in past-climate simulations remains relatively underexplored. Such simulations can offer insights into long-term drought variability that observational records cannot capture. Therefore, our study investigates circulation patterns in the Euro-Atlantic domain associated with multi-year soil moisture droughts over the Mediterranean region during the last millennium (850–2005 CE) in climate simulations. For this, we use the fifth phase of the Climate Model Intercomparison Project–Paleoclimate Model Intercomparison Project Phase 3 (CMIP5–PMIP3) and the CESM Last Millennium Ensemble Project. Primarily, we examine the differences among the models in representing drought variability and related circulation patterns. For the analysis, we exclude the anthropogenic trends from 1850–2005 CE, and to detect the circulation patterns, we perform <span class="inline-formula"><i>k</i></span>-means clustering combined with linear correlation analyses.</p> <p>The findings confirm that Mediterranean drought occurrence during the last millennium is associated with internal variability in the climate system. Drought variability, the associated circulation patterns, and the frequencies of these patterns vary across the models. Some climate models exhibit a multidecadal anti-phase occurrence of some drought periods between the western and eastern Mediterranean regions, although the exact periods of coherence differ among the models. This anti-phase co-variability, which agrees with some proxy records, can be explained by the dominant circulation patterns in each region detected by the models: western Mediterranean droughts are dominated by a high-pressure system over central Europe and a North Atlantic Oscillation (NAO)-like pattern, while eastern Mediterranean droughts are linked to positive pressure anomalies in the southern and eastern Mediterranean and negative NAO, East Atlantic, and East Atlantic–western Russia-like patterns. The frequencies of these modes of climate variability are strongly model-dependent; i.e., some patterns occur more frequently or only in some models, suggesting that the main drivers of droughts differ among the models. Although it is complicated to evaluate the representation of droughts and associated circulation among the models, in general, the models with lower horizontal and vertical spatial land resolutions exhibit drought variability and patterns that distinctly differ from other models. These model differences and preferences toward some circulation patterns can be a source of uncertainties in the model–proxy comparison of Mediterranean droughts and potentially influence future climate projections.</p>https://cp.copernicus.org/articles/19/2511/2023/cp-19-2511-2023.pdf
spellingShingle W. M. Kim
W. M. Kim
W. M. Kim
S. J. González-Rojí
S. J. González-Rojí
C. C. Raible
C. C. Raible
Extratropical circulation associated with Mediterranean droughts during the Last Millennium in CMIP5 simulations
Climate of the Past
title Extratropical circulation associated with Mediterranean droughts during the Last Millennium in CMIP5 simulations
title_full Extratropical circulation associated with Mediterranean droughts during the Last Millennium in CMIP5 simulations
title_fullStr Extratropical circulation associated with Mediterranean droughts during the Last Millennium in CMIP5 simulations
title_full_unstemmed Extratropical circulation associated with Mediterranean droughts during the Last Millennium in CMIP5 simulations
title_short Extratropical circulation associated with Mediterranean droughts during the Last Millennium in CMIP5 simulations
title_sort extratropical circulation associated with mediterranean droughts during the last millennium in cmip5 simulations
url https://cp.copernicus.org/articles/19/2511/2023/cp-19-2511-2023.pdf
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