An Ocean Memory Perspective: Disentangling Atmospheric Control of Decadal Variability in the North Atlantic Ocean

Abstract An ocean memory framework is proposed to reveal the atmosphere's influence on ocean temperatures. Anomalous atmospheric forcing alters the ocean state through two mechanisms: short‐term, local effects involving air−sea heat fluxes and Ekman circulation, and long‐term, far‐field effects...

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Published in:Geophysical Research Letters
Main Authors: Hemant Khatri, Richard G. Williams, Tim Woollings, Doug M. Smith
Format: Article in Journal/Newspaper
Language:English
Published: Wiley 2024
Subjects:
Online Access:https://doi.org/10.1029/2024GL110333
https://doaj.org/article/45ad97ce08ea4a7088efffda70f8ccea
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author Hemant Khatri
Richard G. Williams
Tim Woollings
Doug M. Smith
author_facet Hemant Khatri
Richard G. Williams
Tim Woollings
Doug M. Smith
author_sort Hemant Khatri
collection Directory of Open Access Journals: DOAJ Articles
container_issue 20
container_title Geophysical Research Letters
container_volume 51
description Abstract An ocean memory framework is proposed to reveal the atmosphere's influence on ocean temperatures. Anomalous atmospheric forcing alters the ocean state through two mechanisms: short‐term, local effects involving air−sea heat fluxes and Ekman circulation, and long‐term, far‐field effects involving changes from overturning and gyre circulations. The framework employs the Green function's method to incorporate both effects, enabling the quantification of ocean memory and the contribution of atmospheric forcing to ocean thermal variability. The framework is employed to examine the North Atlantic Oscillation's (NAO) influence on the North Atlantic Ocean variability, including the Atlantic Multidecadal Variability, with its memory estimated to be 10–20 years. The NAO and variability in the North Atlantic jet speed explain up to 30% of ocean decadal variability, primarily driven by temporal changes in ocean heat transport. Therefore, decadal fluctuations in ocean temperatures cannot be accurately modeled solely as a passive response to stochastic atmospheric forcing.
format Article in Journal/Newspaper
genre North Atlantic
North Atlantic oscillation
genre_facet North Atlantic
North Atlantic oscillation
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https://doaj.org/toc/1944-8007
doi:10.1029/2024GL110333
https://doaj.org/article/45ad97ce08ea4a7088efffda70f8ccea
op_source Geophysical Research Letters, Vol 51, Iss 20, Pp n/a-n/a (2024)
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spelling ftdoajarticles:oai:doaj.org/article:45ad97ce08ea4a7088efffda70f8ccea 2025-01-16T23:29:47+00:00 An Ocean Memory Perspective: Disentangling Atmospheric Control of Decadal Variability in the North Atlantic Ocean Hemant Khatri Richard G. Williams Tim Woollings Doug M. Smith 2024-10-01T00:00:00Z https://doi.org/10.1029/2024GL110333 https://doaj.org/article/45ad97ce08ea4a7088efffda70f8ccea EN eng Wiley https://doi.org/10.1029/2024GL110333 https://doaj.org/toc/0094-8276 https://doaj.org/toc/1944-8007 doi:10.1029/2024GL110333 https://doaj.org/article/45ad97ce08ea4a7088efffda70f8ccea Geophysical Research Letters, Vol 51, Iss 20, Pp n/a-n/a (2024) ocean memory Atlantic multidecadal variability North Atlantic oscillation Geophysics. Cosmic physics QC801-809 article 2024 ftdoajarticles https://doi.org/10.1029/2024GL110333 2024-11-14T16:07:16Z Abstract An ocean memory framework is proposed to reveal the atmosphere's influence on ocean temperatures. Anomalous atmospheric forcing alters the ocean state through two mechanisms: short‐term, local effects involving air−sea heat fluxes and Ekman circulation, and long‐term, far‐field effects involving changes from overturning and gyre circulations. The framework employs the Green function's method to incorporate both effects, enabling the quantification of ocean memory and the contribution of atmospheric forcing to ocean thermal variability. The framework is employed to examine the North Atlantic Oscillation's (NAO) influence on the North Atlantic Ocean variability, including the Atlantic Multidecadal Variability, with its memory estimated to be 10–20 years. The NAO and variability in the North Atlantic jet speed explain up to 30% of ocean decadal variability, primarily driven by temporal changes in ocean heat transport. Therefore, decadal fluctuations in ocean temperatures cannot be accurately modeled solely as a passive response to stochastic atmospheric forcing. Article in Journal/Newspaper North Atlantic North Atlantic oscillation Directory of Open Access Journals: DOAJ Articles Geophysical Research Letters 51 20
spellingShingle ocean memory
Atlantic multidecadal variability
North Atlantic oscillation
Geophysics. Cosmic physics
QC801-809
Hemant Khatri
Richard G. Williams
Tim Woollings
Doug M. Smith
An Ocean Memory Perspective: Disentangling Atmospheric Control of Decadal Variability in the North Atlantic Ocean
title An Ocean Memory Perspective: Disentangling Atmospheric Control of Decadal Variability in the North Atlantic Ocean
title_full An Ocean Memory Perspective: Disentangling Atmospheric Control of Decadal Variability in the North Atlantic Ocean
title_fullStr An Ocean Memory Perspective: Disentangling Atmospheric Control of Decadal Variability in the North Atlantic Ocean
title_full_unstemmed An Ocean Memory Perspective: Disentangling Atmospheric Control of Decadal Variability in the North Atlantic Ocean
title_short An Ocean Memory Perspective: Disentangling Atmospheric Control of Decadal Variability in the North Atlantic Ocean
title_sort ocean memory perspective: disentangling atmospheric control of decadal variability in the north atlantic ocean
topic ocean memory
Atlantic multidecadal variability
North Atlantic oscillation
Geophysics. Cosmic physics
QC801-809
topic_facet ocean memory
Atlantic multidecadal variability
North Atlantic oscillation
Geophysics. Cosmic physics
QC801-809
url https://doi.org/10.1029/2024GL110333
https://doaj.org/article/45ad97ce08ea4a7088efffda70f8ccea