Atmospheric blocking and winter mid-latitude climate variability

Atmospheric blocking is a mid-latitude weather pattern that describes a quasi-stationary, long-lasting, high-pressure system that modifies the westerly flow, blocking (or at least di- verting) the eastward movement of the migratory cyclones. Blocking events can have major impacts on the mid-latitude...

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Bibliographic Details
Main Author: Davini, Paolo
Other Authors: Cagnazzo, Chiara, Barbante, Carlo
Format: Doctoral or Postdoctoral Thesis
Language:English
Published: Università Ca' Foscari Venezia 2013
Subjects:
Online Access:https://hdl.handle.net/10278/5074190
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author Davini, Paolo
author2 Davini, Paolo
Cagnazzo, Chiara
Barbante, Carlo
author_facet Davini, Paolo
author_sort Davini, Paolo
collection Università Ca’ Foscari Venezia: ARCA (Archivio Istituzionale della Ricerca)
description Atmospheric blocking is a mid-latitude weather pattern that describes a quasi-stationary, long-lasting, high-pressure system that modifies the westerly flow, blocking (or at least di- verting) the eastward movement of the migratory cyclones. Blocking events can have major impacts on the mid-latitude weather, sometimes leading to extreme events as cold spells in winter or heat waves in summer. In this thesis, Northern Hemisphere winter blocking and its impacts on mid-latitude climate are analyzed through the introduction of a set of new bidimensional diagnostics based on the geopotential height that provide information about the occurrence, the duration, the intensity and the wave breaking associated with the block- ing. We are able to distinguish among three main categories of blocking: one placed at low latitudes over the Pacific and Atlantic oceans, unable to block or divert the flow. A second one is detected at high latitude occurring over Greenland and North Pacific, north of the jet stream and dominated by cyclonic wave breaking. Finally a third category is defined as the traditional mid-latitude blocking, and it appears as being only localized over Europe and driven by anticyclonic wave breaking. We address the relationship between the North Atlantic Oscillation (NAO) and the block- ing occurrence, showing that blocking over Greenland (Greenland Blocking, GB) is not only a key element to describe the NAO index, but it is essential also to modulate its pattern. Consistent with this, we link the eastward displacement of the NAO pattern observed in the recent years to the decreasing frequency of Greenland Blocking. On the other side, we notice that blocking events over Europe (European Blocking) are not correlated with the NAO. We also analyze the relationship between the Atlantic eddy driven jet stream dis- placements and blocking occurrence. We find that Greenland Blocking is linked with the equatorward displacements of the jet stream, while European Blocking is associated with poleward displacements of the ...
format Doctoral or Postdoctoral Thesis
genre Greenland
North Atlantic
North Atlantic oscillation
genre_facet Greenland
North Atlantic
North Atlantic oscillation
geographic Greenland
Pacific
geographic_facet Greenland
Pacific
id ftuniveneziairis:oai:iris.unive.it:10579/2241
institution Open Polar
language English
op_collection_id ftuniveneziairis
op_relation numberofpages:141 p. : ill.
https://hdl.handle.net/10278/5074190
op_rights info:eu-repo/semantics/openAccess
publishDate 2013
publisher Università Ca' Foscari Venezia
record_format openpolar
spelling ftuniveneziairis:oai:iris.unive.it:10579/2241 2025-01-16T22:08:45+00:00 Atmospheric blocking and winter mid-latitude climate variability Davini, Paolo Davini, Paolo Cagnazzo, Chiara Barbante, Carlo 2013-02-22 https://hdl.handle.net/10278/5074190 eng eng Università Ca' Foscari Venezia numberofpages:141 p. : ill. https://hdl.handle.net/10278/5074190 info:eu-repo/semantics/openAccess Settore FIS/06 - Fisica per il Sistema Terra e Il Mezzo Circumterrestre info:eu-repo/semantics/doctoralThesis 2013 ftuniveneziairis 2024-09-23T23:56:50Z Atmospheric blocking is a mid-latitude weather pattern that describes a quasi-stationary, long-lasting, high-pressure system that modifies the westerly flow, blocking (or at least di- verting) the eastward movement of the migratory cyclones. Blocking events can have major impacts on the mid-latitude weather, sometimes leading to extreme events as cold spells in winter or heat waves in summer. In this thesis, Northern Hemisphere winter blocking and its impacts on mid-latitude climate are analyzed through the introduction of a set of new bidimensional diagnostics based on the geopotential height that provide information about the occurrence, the duration, the intensity and the wave breaking associated with the block- ing. We are able to distinguish among three main categories of blocking: one placed at low latitudes over the Pacific and Atlantic oceans, unable to block or divert the flow. A second one is detected at high latitude occurring over Greenland and North Pacific, north of the jet stream and dominated by cyclonic wave breaking. Finally a third category is defined as the traditional mid-latitude blocking, and it appears as being only localized over Europe and driven by anticyclonic wave breaking. We address the relationship between the North Atlantic Oscillation (NAO) and the block- ing occurrence, showing that blocking over Greenland (Greenland Blocking, GB) is not only a key element to describe the NAO index, but it is essential also to modulate its pattern. Consistent with this, we link the eastward displacement of the NAO pattern observed in the recent years to the decreasing frequency of Greenland Blocking. On the other side, we notice that blocking events over Europe (European Blocking) are not correlated with the NAO. We also analyze the relationship between the Atlantic eddy driven jet stream dis- placements and blocking occurrence. We find that Greenland Blocking is linked with the equatorward displacements of the jet stream, while European Blocking is associated with poleward displacements of the ... Doctoral or Postdoctoral Thesis Greenland North Atlantic North Atlantic oscillation Università Ca’ Foscari Venezia: ARCA (Archivio Istituzionale della Ricerca) Greenland Pacific
spellingShingle Settore FIS/06 - Fisica per il Sistema Terra e Il Mezzo Circumterrestre
Davini, Paolo
Atmospheric blocking and winter mid-latitude climate variability
title Atmospheric blocking and winter mid-latitude climate variability
title_full Atmospheric blocking and winter mid-latitude climate variability
title_fullStr Atmospheric blocking and winter mid-latitude climate variability
title_full_unstemmed Atmospheric blocking and winter mid-latitude climate variability
title_short Atmospheric blocking and winter mid-latitude climate variability
title_sort atmospheric blocking and winter mid-latitude climate variability
topic Settore FIS/06 - Fisica per il Sistema Terra e Il Mezzo Circumterrestre
topic_facet Settore FIS/06 - Fisica per il Sistema Terra e Il Mezzo Circumterrestre
url https://hdl.handle.net/10278/5074190