Linking air stagnation in Europe with the synoptic- to large-scale atmospheric circulation

The build-up of pollutants to harmful levels can occur when meteorological conditions favour their production or accumulation near the surface. Such conditions can arise when a region experiences air stagnation. The link between European air stagnation, air pollution and the synoptic- to large-scale...

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Published in:Weather and Climate Dynamics
Main Authors: Maddison, Jacob W., Abalos, Marta, Barriopedro, David, García-Herrera, Ricardo, Garrido-Perez, Jose M., Ordóñez, Carlos
Format: Text
Language:English
Published: 2021
Subjects:
Online Access:https://doi.org/10.5194/wcd-2-675-2021
https://wcd.copernicus.org/articles/2/675/2021/
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spelling ftcopernicus:oai:publications.copernicus.org:wcd92500 2023-05-15T17:34:36+02:00 Linking air stagnation in Europe with the synoptic- to large-scale atmospheric circulation Maddison, Jacob W. Abalos, Marta Barriopedro, David García-Herrera, Ricardo Garrido-Perez, Jose M. Ordóñez, Carlos 2021-08-03 application/pdf https://doi.org/10.5194/wcd-2-675-2021 https://wcd.copernicus.org/articles/2/675/2021/ eng eng doi:10.5194/wcd-2-675-2021 https://wcd.copernicus.org/articles/2/675/2021/ eISSN: 2698-4016 Text 2021 ftcopernicus https://doi.org/10.5194/wcd-2-675-2021 2021-08-09T16:22:28Z The build-up of pollutants to harmful levels can occur when meteorological conditions favour their production or accumulation near the surface. Such conditions can arise when a region experiences air stagnation. The link between European air stagnation, air pollution and the synoptic- to large-scale circulation is investigated in this article across all seasons and the 1979–2018 period. Dynamical indices identifying atmospheric blocking, Rossby wave breaking, subtropical ridges, and the North Atlantic eddy-driven and subtropical jets are used to describe the synoptic- to large-scale circulation as predictors in statistical models of air stagnation and pollutant variability. It is found that the large-scale circulation can explain approximately 60 % of the variance in monthly air stagnation, ozone and wintertime particulate matter (PM) in five distinct regions within Europe. The variance explained by the model does not vary strongly across regions and seasons, apart from for PM when the skill is highest in winter. However, the dynamical indices most related to air stagnation do depend on region and season. The blocking and Rossby wave breaking predictors tend to be the most important for describing air stagnation and pollutant variability in northern regions, whereas ridges and the subtropical jet are more important to the south. The demonstrated correspondence between air stagnation, pollution and the large-scale circulation can be used to assess the representation of stagnation in climate models, which is key for understanding how air stagnation and its associated climatic impacts may change in the future. Text North Atlantic Copernicus Publications: E-Journals Weather and Climate Dynamics 2 3 675 694
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collection Copernicus Publications: E-Journals
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language English
description The build-up of pollutants to harmful levels can occur when meteorological conditions favour their production or accumulation near the surface. Such conditions can arise when a region experiences air stagnation. The link between European air stagnation, air pollution and the synoptic- to large-scale circulation is investigated in this article across all seasons and the 1979–2018 period. Dynamical indices identifying atmospheric blocking, Rossby wave breaking, subtropical ridges, and the North Atlantic eddy-driven and subtropical jets are used to describe the synoptic- to large-scale circulation as predictors in statistical models of air stagnation and pollutant variability. It is found that the large-scale circulation can explain approximately 60 % of the variance in monthly air stagnation, ozone and wintertime particulate matter (PM) in five distinct regions within Europe. The variance explained by the model does not vary strongly across regions and seasons, apart from for PM when the skill is highest in winter. However, the dynamical indices most related to air stagnation do depend on region and season. The blocking and Rossby wave breaking predictors tend to be the most important for describing air stagnation and pollutant variability in northern regions, whereas ridges and the subtropical jet are more important to the south. The demonstrated correspondence between air stagnation, pollution and the large-scale circulation can be used to assess the representation of stagnation in climate models, which is key for understanding how air stagnation and its associated climatic impacts may change in the future.
format Text
author Maddison, Jacob W.
Abalos, Marta
Barriopedro, David
García-Herrera, Ricardo
Garrido-Perez, Jose M.
Ordóñez, Carlos
spellingShingle Maddison, Jacob W.
Abalos, Marta
Barriopedro, David
García-Herrera, Ricardo
Garrido-Perez, Jose M.
Ordóñez, Carlos
Linking air stagnation in Europe with the synoptic- to large-scale atmospheric circulation
author_facet Maddison, Jacob W.
Abalos, Marta
Barriopedro, David
García-Herrera, Ricardo
Garrido-Perez, Jose M.
Ordóñez, Carlos
author_sort Maddison, Jacob W.
title Linking air stagnation in Europe with the synoptic- to large-scale atmospheric circulation
title_short Linking air stagnation in Europe with the synoptic- to large-scale atmospheric circulation
title_full Linking air stagnation in Europe with the synoptic- to large-scale atmospheric circulation
title_fullStr Linking air stagnation in Europe with the synoptic- to large-scale atmospheric circulation
title_full_unstemmed Linking air stagnation in Europe with the synoptic- to large-scale atmospheric circulation
title_sort linking air stagnation in europe with the synoptic- to large-scale atmospheric circulation
publishDate 2021
url https://doi.org/10.5194/wcd-2-675-2021
https://wcd.copernicus.org/articles/2/675/2021/
genre North Atlantic
genre_facet North Atlantic
op_source eISSN: 2698-4016
op_relation doi:10.5194/wcd-2-675-2021
https://wcd.copernicus.org/articles/2/675/2021/
op_doi https://doi.org/10.5194/wcd-2-675-2021
container_title Weather and Climate Dynamics
container_volume 2
container_issue 3
container_start_page 675
op_container_end_page 694
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