Tropical convective transport and the Walker circulation

We introduce a methodology to visualise rapid vertical and zonal tropical transport pathways. Using prescribed sea-surface temperatures in four monthly model integrations for 2005, we characterise preferred transport routes from the troposphere to the stratosphere in a high resolution climate model....

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Main Authors: J. S. Hosking, M. R. Russo, P. Braesicke, J. A. Pyle
Format: Article
Language:English
Published: Copernicus Publications 2012-10-01
Series:Atmospheric Chemistry and Physics
Online Access:http://www.atmos-chem-phys.net/12/9791/2012/acp-12-9791-2012.pdf
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spelling doaj-3940dd09b8274bdc935d1b8b6fb23f682020-11-24T23:08:18ZengCopernicus PublicationsAtmospheric Chemistry and Physics1680-73161680-73242012-10-0112209791979710.5194/acp-12-9791-2012Tropical convective transport and the Walker circulationJ. S. HoskingM. R. RussoP. BraesickeJ. A. PyleWe introduce a methodology to visualise rapid vertical and zonal tropical transport pathways. Using prescribed sea-surface temperatures in four monthly model integrations for 2005, we characterise preferred transport routes from the troposphere to the stratosphere in a high resolution climate model. Most efficient transport is modelled over the Maritime Continent (MC) in November and February, i.e., boreal winter. In these months, the ascending branch of the Walker Circulation over the MC is formed in conjunction with strong deep convection, allowing fast transport into the stratosphere. In the model the upper tropospheric zonal winds associated with the Walker Circulation are also greatest in these months in agreement with ERA-Interim reanalysis data. We conclude that the Walker circulation plays an important role in the seasonality of fast tropical transport from the lower and middle troposphere to the upper troposphere and so impacts at the same time the potential supply of surface emissions to the tropical tropopause layer (TTL) and subsequently to the stratosphere.http://www.atmos-chem-phys.net/12/9791/2012/acp-12-9791-2012.pdf
collection DOAJ
language English
format Article
sources DOAJ
author J. S. Hosking
M. R. Russo
P. Braesicke
J. A. Pyle
spellingShingle J. S. Hosking
M. R. Russo
P. Braesicke
J. A. Pyle
Tropical convective transport and the Walker circulation
Atmospheric Chemistry and Physics
author_facet J. S. Hosking
M. R. Russo
P. Braesicke
J. A. Pyle
author_sort J. S. Hosking
title Tropical convective transport and the Walker circulation
title_short Tropical convective transport and the Walker circulation
title_full Tropical convective transport and the Walker circulation
title_fullStr Tropical convective transport and the Walker circulation
title_full_unstemmed Tropical convective transport and the Walker circulation
title_sort tropical convective transport and the walker circulation
publisher Copernicus Publications
series Atmospheric Chemistry and Physics
issn 1680-7316
1680-7324
publishDate 2012-10-01
description We introduce a methodology to visualise rapid vertical and zonal tropical transport pathways. Using prescribed sea-surface temperatures in four monthly model integrations for 2005, we characterise preferred transport routes from the troposphere to the stratosphere in a high resolution climate model. Most efficient transport is modelled over the Maritime Continent (MC) in November and February, i.e., boreal winter. In these months, the ascending branch of the Walker Circulation over the MC is formed in conjunction with strong deep convection, allowing fast transport into the stratosphere. In the model the upper tropospheric zonal winds associated with the Walker Circulation are also greatest in these months in agreement with ERA-Interim reanalysis data. We conclude that the Walker circulation plays an important role in the seasonality of fast tropical transport from the lower and middle troposphere to the upper troposphere and so impacts at the same time the potential supply of surface emissions to the tropical tropopause layer (TTL) and subsequently to the stratosphere.
url http://www.atmos-chem-phys.net/12/9791/2012/acp-12-9791-2012.pdf
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AT pbraesicke tropicalconvectivetransportandthewalkercirculation
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