Understanding the mechanisms for tropical surface impacts of the quasi‐biennial oscillation (QBO)

The impact of the quasi-biennial oscillation (QBO) on tropical convection and precipitation is investigated through nudging experiments using the UK Met Office Hadley Center Unified Model. The model control simulations show robust links between the internally generated QBO and tropical precipitation...

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Main Authors: García‐Franco, JL, Gray, LJ, Osprey, S, Jaison, AM, Chadwick, R, Lin, J
Format: Journal article
Language:English
Published: Wiley 2023
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author García‐Franco, JL
Gray, LJ
Osprey, S
Jaison, AM
Chadwick, R
Lin, J
author_facet García‐Franco, JL
Gray, LJ
Osprey, S
Jaison, AM
Chadwick, R
Lin, J
author_sort García‐Franco, JL
collection OXFORD
description The impact of the quasi-biennial oscillation (QBO) on tropical convection and precipitation is investigated through nudging experiments using the UK Met Office Hadley Center Unified Model. The model control simulations show robust links between the internally generated QBO and tropical precipitation and circulation. The model zonal wind in the tropical stratosphere was nudged above 90 hPa in atmosphere-only and coupled ocean-atmosphere configurations. The convection and precipitation in the atmosphere-only simulations do not differ between the experiments with and without nudging, which may indicate that SST-convection coupling is needed for any QBO influence on the tropical lower troposphere and surface. In the coupled experiments, the precipitation and sea-surface temperature relationships with the QBO phase disappear when nudging is applied. Imposing a realistic QBO-driven static stability anomaly in the upper-troposphere lower-stratosphere is not sufficient to simulate tropical surface impacts. The nudging reduced the influence of the lower troposphere on the upper branch of the Walker circulation, irrespective of the QBO, indicating that the upper tropospheric zonal circulation has been decoupled from the surface by the nudging. These results suggest that grid-point nudging mutes relevant feedback processes occurring at the tropopause level, including high cloud radiative effects and wave mean flow interactions, which may play a key role in stratospheric-tropospheric coupling.
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spelling oxford-uuid:b1837fa2-fbe8-4be4-9d6a-eba63071e8bc2023-10-04T06:34:11ZUnderstanding the mechanisms for tropical surface impacts of the quasi‐biennial oscillation (QBO)Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:b1837fa2-fbe8-4be4-9d6a-eba63071e8bcEnglishSymplectic ElementsWiley2023García‐Franco, JLGray, LJOsprey, SJaison, AMChadwick, RLin, JThe impact of the quasi-biennial oscillation (QBO) on tropical convection and precipitation is investigated through nudging experiments using the UK Met Office Hadley Center Unified Model. The model control simulations show robust links between the internally generated QBO and tropical precipitation and circulation. The model zonal wind in the tropical stratosphere was nudged above 90 hPa in atmosphere-only and coupled ocean-atmosphere configurations. The convection and precipitation in the atmosphere-only simulations do not differ between the experiments with and without nudging, which may indicate that SST-convection coupling is needed for any QBO influence on the tropical lower troposphere and surface. In the coupled experiments, the precipitation and sea-surface temperature relationships with the QBO phase disappear when nudging is applied. Imposing a realistic QBO-driven static stability anomaly in the upper-troposphere lower-stratosphere is not sufficient to simulate tropical surface impacts. The nudging reduced the influence of the lower troposphere on the upper branch of the Walker circulation, irrespective of the QBO, indicating that the upper tropospheric zonal circulation has been decoupled from the surface by the nudging. These results suggest that grid-point nudging mutes relevant feedback processes occurring at the tropopause level, including high cloud radiative effects and wave mean flow interactions, which may play a key role in stratospheric-tropospheric coupling.
spellingShingle García‐Franco, JL
Gray, LJ
Osprey, S
Jaison, AM
Chadwick, R
Lin, J
Understanding the mechanisms for tropical surface impacts of the quasi‐biennial oscillation (QBO)
title Understanding the mechanisms for tropical surface impacts of the quasi‐biennial oscillation (QBO)
title_full Understanding the mechanisms for tropical surface impacts of the quasi‐biennial oscillation (QBO)
title_fullStr Understanding the mechanisms for tropical surface impacts of the quasi‐biennial oscillation (QBO)
title_full_unstemmed Understanding the mechanisms for tropical surface impacts of the quasi‐biennial oscillation (QBO)
title_short Understanding the mechanisms for tropical surface impacts of the quasi‐biennial oscillation (QBO)
title_sort understanding the mechanisms for tropical surface impacts of the quasi biennial oscillation qbo
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