Relationship between atmospheric blocking and warm‐season thunderstorms over western and central Europe
A statistically significant link is presented between atmospheric blocking located over the eastern North Atlantic and northern Europe and warm‐season thunderstorm activity over western and central Europe. Lightning data from 2001 to 2014 were used to identify thunderstorm days and blocking events w...
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ftunivbern:oai:boris.unibe.ch:138764 2023-08-20T04:08:15+02:00 Relationship between atmospheric blocking and warm‐season thunderstorms over western and central Europe Mohr, Susanna Wandel, Jan Lenggenhager, Sina Martius, Olivia 2019-07-02 application/pdf https://boris.unibe.ch/138764/1/Mohr_et_al-2019-Quarterly_Journal_of_the_Royal_Meteorological_Society.pdf https://boris.unibe.ch/138764/ eng eng Royal Meteorological Society https://boris.unibe.ch/138764/ info:eu-repo/semantics/restrictedAccess Mohr, Susanna; Wandel, Jan; Lenggenhager, Sina; Martius, Olivia (2019). Relationship between atmospheric blocking and warm‐season thunderstorms over western and central Europe. Quarterly Journal of the Royal Meteorological Society, 145(724), pp. 3040-3056. Royal Meteorological Society 10.1002/qj.3603 <http://dx.doi.org/10.1002/qj.3603> 550 Earth sciences & geology 910 Geography & travel info:eu-repo/semantics/article info:eu-repo/semantics/publishedVersion PeerReviewed 2019 ftunivbern https://doi.org/10.1002/qj.3603 2023-07-31T21:57:05Z A statistically significant link is presented between atmospheric blocking located over the eastern North Atlantic and northern Europe and warm‐season thunderstorm activity over western and central Europe. Lightning data from 2001 to 2014 were used to identify thunderstorm days and blocking events were extracted from the ERA‐Interim reanalysis using an objective identification algorithm. The statistical link between the two phenomena is established through odds ratio analysis. Two areas – one over the eastern part of the North Atlantic and one over the Baltic Sea – were identified as locations where blocking influences the occurrence of deep moist convection in parts of western and central Europe. Based on the mean ambient conditions on days with blocking in these two areas, well‐known dynamic and thermodynamic mechanisms supporting or suppressing the development of thunderstorms were confirmed. The anticyclonic circulation of a block over the eastern part of the North Atlantic leads to a northerly to northwesterly advection of dry and stable air masses into Europe on the eastern flank of the block. In addition, these environmental conditions are on average associated with large‐scale subsidence of air masses (convection‐inhibiting conditions). In contrast, the southerly to southwesterly advection of warm, moist and unstable air masses on the western flank of a block over the Baltic Sea results in convection‐favouring conditions over western and central Europe. Both blocking situations are on average associated with weak wind speeds at mid‐tropospheric levels and with weak wind shear. As a consequence, thunderstorms related to atmospheric blocking over the Baltic Sea tend to be on average less organised. Article in Journal/Newspaper North Atlantic BORIS (Bern Open Repository and Information System, University of Bern) Quarterly Journal of the Royal Meteorological Society 145 724 3040 3056 |
institution |
Open Polar |
collection |
BORIS (Bern Open Repository and Information System, University of Bern) |
op_collection_id |
ftunivbern |
language |
English |
topic |
550 Earth sciences & geology 910 Geography & travel |
spellingShingle |
550 Earth sciences & geology 910 Geography & travel Mohr, Susanna Wandel, Jan Lenggenhager, Sina Martius, Olivia Relationship between atmospheric blocking and warm‐season thunderstorms over western and central Europe |
topic_facet |
550 Earth sciences & geology 910 Geography & travel |
description |
A statistically significant link is presented between atmospheric blocking located over the eastern North Atlantic and northern Europe and warm‐season thunderstorm activity over western and central Europe. Lightning data from 2001 to 2014 were used to identify thunderstorm days and blocking events were extracted from the ERA‐Interim reanalysis using an objective identification algorithm. The statistical link between the two phenomena is established through odds ratio analysis. Two areas – one over the eastern part of the North Atlantic and one over the Baltic Sea – were identified as locations where blocking influences the occurrence of deep moist convection in parts of western and central Europe. Based on the mean ambient conditions on days with blocking in these two areas, well‐known dynamic and thermodynamic mechanisms supporting or suppressing the development of thunderstorms were confirmed. The anticyclonic circulation of a block over the eastern part of the North Atlantic leads to a northerly to northwesterly advection of dry and stable air masses into Europe on the eastern flank of the block. In addition, these environmental conditions are on average associated with large‐scale subsidence of air masses (convection‐inhibiting conditions). In contrast, the southerly to southwesterly advection of warm, moist and unstable air masses on the western flank of a block over the Baltic Sea results in convection‐favouring conditions over western and central Europe. Both blocking situations are on average associated with weak wind speeds at mid‐tropospheric levels and with weak wind shear. As a consequence, thunderstorms related to atmospheric blocking over the Baltic Sea tend to be on average less organised. |
format |
Article in Journal/Newspaper |
author |
Mohr, Susanna Wandel, Jan Lenggenhager, Sina Martius, Olivia |
author_facet |
Mohr, Susanna Wandel, Jan Lenggenhager, Sina Martius, Olivia |
author_sort |
Mohr, Susanna |
title |
Relationship between atmospheric blocking and warm‐season thunderstorms over western and central Europe |
title_short |
Relationship between atmospheric blocking and warm‐season thunderstorms over western and central Europe |
title_full |
Relationship between atmospheric blocking and warm‐season thunderstorms over western and central Europe |
title_fullStr |
Relationship between atmospheric blocking and warm‐season thunderstorms over western and central Europe |
title_full_unstemmed |
Relationship between atmospheric blocking and warm‐season thunderstorms over western and central Europe |
title_sort |
relationship between atmospheric blocking and warm‐season thunderstorms over western and central europe |
publisher |
Royal Meteorological Society |
publishDate |
2019 |
url |
https://boris.unibe.ch/138764/1/Mohr_et_al-2019-Quarterly_Journal_of_the_Royal_Meteorological_Society.pdf https://boris.unibe.ch/138764/ |
genre |
North Atlantic |
genre_facet |
North Atlantic |
op_source |
Mohr, Susanna; Wandel, Jan; Lenggenhager, Sina; Martius, Olivia (2019). Relationship between atmospheric blocking and warm‐season thunderstorms over western and central Europe. Quarterly Journal of the Royal Meteorological Society, 145(724), pp. 3040-3056. Royal Meteorological Society 10.1002/qj.3603 <http://dx.doi.org/10.1002/qj.3603> |
op_relation |
https://boris.unibe.ch/138764/ |
op_rights |
info:eu-repo/semantics/restrictedAccess |
op_doi |
https://doi.org/10.1002/qj.3603 |
container_title |
Quarterly Journal of the Royal Meteorological Society |
container_volume |
145 |
container_issue |
724 |
container_start_page |
3040 |
op_container_end_page |
3056 |
_version_ |
1774720424550072320 |