Javascript must be enabled to continue!
Arctic Stratosphere Dynamical Processes in the Winter 2021–2022
View through CrossRef
The Arctic stratosphere winter season of 2021–2022 was characterized by a stable, cold stratospheric polar vortex with a volume of polar stratospheric clouds (PSC) close to the maximum values since 1980, before the beginning of minor sudden stratospheric warming (SSW) events in the late February and early March and major SSW on 20 March. Analysis of dynamical processes of the Arctic stratosphere using reanalysis data indicates that the main reasons for the strengthening of the stratospheric polar vortex in January–February are the minimum propagation of planetary wave activity from the troposphere to the stratosphere over the past 40 years and its reflection in the upper stratosphere–lower mesosphere in the second half of January. The first minor SSW was limited to the upper polar stratosphere, whereas the second one propagated to the middle and lower stratosphere and led to the disappearance of the PSC, which prevented significant ozone depletion. Both minor and major SSW events led to a weakening of the residual meridional circulation in the upper Arctic stratosphere and its intensification in the middle and lower stratosphere, which contributed to additional warming of the subpolar region and weakening of the polar vortex.
Title: Arctic Stratosphere Dynamical Processes in the Winter 2021–2022
Description:
The Arctic stratosphere winter season of 2021–2022 was characterized by a stable, cold stratospheric polar vortex with a volume of polar stratospheric clouds (PSC) close to the maximum values since 1980, before the beginning of minor sudden stratospheric warming (SSW) events in the late February and early March and major SSW on 20 March.
Analysis of dynamical processes of the Arctic stratosphere using reanalysis data indicates that the main reasons for the strengthening of the stratospheric polar vortex in January–February are the minimum propagation of planetary wave activity from the troposphere to the stratosphere over the past 40 years and its reflection in the upper stratosphere–lower mesosphere in the second half of January.
The first minor SSW was limited to the upper polar stratosphere, whereas the second one propagated to the middle and lower stratosphere and led to the disappearance of the PSC, which prevented significant ozone depletion.
Both minor and major SSW events led to a weakening of the residual meridional circulation in the upper Arctic stratosphere and its intensification in the middle and lower stratosphere, which contributed to additional warming of the subpolar region and weakening of the polar vortex.
Related Results
한국의 북극 거버넌스 구축 및 참여 전략 (Changes in the Arctic and Establishment of New Arctic Governance)
한국의 북극 거버넌스 구축 및 참여 전략 (Changes in the Arctic and Establishment of New Arctic Governance)
<b>Korean Abstract:</b> 21세기 들어 북극 지역의 변화가 가시화되면서 북극이 새롭게 조명을 받고 있다. ‘북극의 변화’는 상호 밀접한 관계를 지닌 세 가지 변화가 중심을 이루고 있다. 첫 번째는 기후변화로 인해 북극의 해빙 속도가 보다 빨라지고 그 범위가 점차 확대되면서, 국제사회...
Quantifying Arctic Storm Risk in a Changing Climate
Quantifying Arctic Storm Risk in a Changing Climate
<p>The Arctic has undergone significant change over the past few decades, and there has been great reductions in Arctic sea ice extent. The Arctic ocean has become mo...
The Polar Silk Road and China's role in Arctic governance
The Polar Silk Road and China's role in Arctic governance
The People's Republic of China (PRC) wants to become a key regional actor in the Arctic. PRC's underlying priority in the region is gaining access to commercial opportunities from ...
Climatic Effects of Hygroscopic Growth of Sulfate Aerosols in the Stratosphere
Climatic Effects of Hygroscopic Growth of Sulfate Aerosols in the Stratosphere
<p>Deliberate climate intervention by injection of sulfate aerosols in the stratosphere is a method proposed to counter anthropogenic climate warming. In such an inje...
The Arctic Springtime Chemistry Climate Investigations – ASCCI aircraft campaign – an overview
The Arctic Springtime Chemistry Climate Investigations – ASCCI aircraft campaign – an overview
The Arctic Springtime Chemistry Climate Investigations (ASCCI) aircraft campaign studied processes in the Arctic upper troposphere and lower stratosphere and their impact on midlat...
Differences in the upper tropospheric and lower stratospheric aerosol composition
Differences in the upper tropospheric and lower stratospheric aerosol composition
<p>The stratosphere and troposphere are the main layers that define a significant part of the atmospheric processes of our planet. They are demarcated by the tropopau...
Russian Arctic Petroleum Resources: Challenges and Future Opportunities
Russian Arctic Petroleum Resources: Challenges and Future Opportunities
Abstract
The Arctic continental shelf is believed to be the area with the highest unexplored potential for oil and gas as well as to unconventional hydrocarbon re...
Quantification of the isentropic mass transport across the dynamical tropopause
Quantification of the isentropic mass transport across the dynamical tropopause
A method is developed to quantify the quasi‐horizontal, isentropic mass transport across the dynamical tropopause by small‐scale filaments. This method is based on the contour adve...

