Robust winter warming over Eurasia under stratospheric sulfate geoengineering – the role of stratospheric dynamics

<p>It has been suggested that increased stratospheric sulfate aerosol loadings following large, low latitude volcanic eruptions can lead to wintertime warming over Eurasia through dynamical stratosphere–troposphere coupling. We here investigate the proposed connection in the context of hypothe...

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Main Authors: A. Banerjee, A. H. Butler, L. M. Polvani, A. Robock, I. R. Simpson, L. Sun
Format: Article
Language:English
Published: Copernicus Publications 2021-05-01
Series:Atmospheric Chemistry and Physics
Online Access:https://acp.copernicus.org/articles/21/6985/2021/acp-21-6985-2021.pdf
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spelling doaj-d827b7b61bd24631bd4df0837c1d18b72021-05-07T12:59:39ZengCopernicus PublicationsAtmospheric Chemistry and Physics1680-73161680-73242021-05-01216985699710.5194/acp-21-6985-2021Robust winter warming over Eurasia under stratospheric sulfate geoengineering – the role of stratospheric dynamicsA. Banerjee0A. Banerjee1A. H. Butler2L. M. Polvani3A. Robock4I. R. Simpson5L. Sun6Cooperative Institute for Research in Environmental Sciences, University of Colorado Boulder, Boulder, CO, USANational Oceanic and Atmospheric Administration, Chemical Sciences Laboratory, Boulder, CO, USANational Oceanic and Atmospheric Administration, Chemical Sciences Laboratory, Boulder, CO, USADepartment of Applied Physics and Applied Mathematics, Columbia University, New York, NY, USADepartment of Environmental Sciences, Rutgers University, New Brunswick, NJ, USAClimate and Global Dynamics Laboratory, National Center for Atmospheric Research, Boulder, CO, USADepartment of Atmospheric Science, Colorado State University, Fort Collins, CO, USA<p>It has been suggested that increased stratospheric sulfate aerosol loadings following large, low latitude volcanic eruptions can lead to wintertime warming over Eurasia through dynamical stratosphere–troposphere coupling. We here investigate the proposed connection in the context of hypothetical future stratospheric sulfate geoengineering in the Geoengineering Large Ensemble simulations. In those geoengineering simulations, we find that stratospheric circulation anomalies that resemble the positive phase of the Northern Annular Mode in winter are a distinguishing climate response which is absent when increasing greenhouse gases alone are prescribed. This stratospheric dynamical response projects onto the positive phase of the North Atlantic Oscillation, leading to associated side effects of this climate intervention strategy, such as continental Eurasian warming and precipitation changes. Seasonality is a key signature of the dynamically driven surface response. We find an opposite response of the North Atlantic Oscillation in summer, when no dynamical role of the stratosphere is expected. The robustness of the wintertime forced response stands in contrast to previously proposed volcanic responses.</p>https://acp.copernicus.org/articles/21/6985/2021/acp-21-6985-2021.pdf
collection DOAJ
language English
format Article
sources DOAJ
author A. Banerjee
A. Banerjee
A. H. Butler
L. M. Polvani
A. Robock
I. R. Simpson
L. Sun
spellingShingle A. Banerjee
A. Banerjee
A. H. Butler
L. M. Polvani
A. Robock
I. R. Simpson
L. Sun
Robust winter warming over Eurasia under stratospheric sulfate geoengineering – the role of stratospheric dynamics
Atmospheric Chemistry and Physics
author_facet A. Banerjee
A. Banerjee
A. H. Butler
L. M. Polvani
A. Robock
I. R. Simpson
L. Sun
author_sort A. Banerjee
title Robust winter warming over Eurasia under stratospheric sulfate geoengineering – the role of stratospheric dynamics
title_short Robust winter warming over Eurasia under stratospheric sulfate geoengineering – the role of stratospheric dynamics
title_full Robust winter warming over Eurasia under stratospheric sulfate geoengineering – the role of stratospheric dynamics
title_fullStr Robust winter warming over Eurasia under stratospheric sulfate geoengineering – the role of stratospheric dynamics
title_full_unstemmed Robust winter warming over Eurasia under stratospheric sulfate geoengineering – the role of stratospheric dynamics
title_sort robust winter warming over eurasia under stratospheric sulfate geoengineering – the role of stratospheric dynamics
publisher Copernicus Publications
series Atmospheric Chemistry and Physics
issn 1680-7316
1680-7324
publishDate 2021-05-01
description <p>It has been suggested that increased stratospheric sulfate aerosol loadings following large, low latitude volcanic eruptions can lead to wintertime warming over Eurasia through dynamical stratosphere–troposphere coupling. We here investigate the proposed connection in the context of hypothetical future stratospheric sulfate geoengineering in the Geoengineering Large Ensemble simulations. In those geoengineering simulations, we find that stratospheric circulation anomalies that resemble the positive phase of the Northern Annular Mode in winter are a distinguishing climate response which is absent when increasing greenhouse gases alone are prescribed. This stratospheric dynamical response projects onto the positive phase of the North Atlantic Oscillation, leading to associated side effects of this climate intervention strategy, such as continental Eurasian warming and precipitation changes. Seasonality is a key signature of the dynamically driven surface response. We find an opposite response of the North Atlantic Oscillation in summer, when no dynamical role of the stratosphere is expected. The robustness of the wintertime forced response stands in contrast to previously proposed volcanic responses.</p>
url https://acp.copernicus.org/articles/21/6985/2021/acp-21-6985-2021.pdf
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