Dominant SST Mode in the Southern Hemisphere Extratropics and Its Influence on Atmospheric Circulation

被引:0
|
作者
Fei ZHENG [1 ]
Jianping LI [2 ,3 ]
Fred KUCHARSKI [4 ,5 ]
Ruiqiang DING [1 ,6 ]
Ting LIU [7 ]
机构
[1] State Key Laboratory of Numerical Modeling for Atmospheric Sciences and Geophysical Fluid Dynamics,Institute of Atmospheric Physics, Chinese Academy of Sciences
[2] State Key Laboratory of Earth Surface Processes and Resource Ecology and College of Global Change and Earth System Science, Beijing Normal University
[3] Laboratory for Regional Oceanography and Numerical Modeling, Qingdao National Laboratory for Marine Science and Technology
[4] Earth System Physics Section, Abdus Salam International Centre for Theoretical Physics
[5] Center of Excellence for Climate Change Research, Department of Meteorology,King Abdulaziz University
[6] Plateau Atmosphere and Environment Key Laboratory of Sichuan Province,Chengdu University of Information Technology
[7] State Key Laboratory of Satellite Ocean Environment Dynamics, Second Institute of Oceanography
基金
中国国家自然科学基金;
关键词
extratropical sea surface temperature; air–sea interaction; Southern Annular Mode;
D O I
暂无
中图分类号
P461.2 [];
学科分类号
摘要
The variability in the Southern Ocean(SO) sea surface temperature(SST) has drawn increased attention due to its unique physical features; therefore, the temporal characteristics of the SO SST anomalies(SSTA) and their influence on extratropical atmospheric circulation are addressed in this study. Results from empirical orthogonal function analysis show that the principal mode of the SO SSTA exhibits a dipole-like structure, suggesting a negative correlation between the SSTA in the middle and high latitudes, which is referred to as the SO Dipole(SOD) in this study. The SOD features strong zonal symmetry, and could reflect more than 50% of total zonal-mean SSTA variability. We find that stronger(weaker) Subantarctic and Antarctic polar fronts are related to the positive(negative) phases of the SOD index, as well as the primary variability of the large-scale SO SSTA meridional gradient. During December–January–February, the Ferrel cell and the polar jet shift toward the Antarctic due to changes in the SSTA that could be associated with a positive phase of the SOD, and are also accompanied by a poleward shift of the subtropical jet. During June–July–August, in association with a positive SOD, the Ferrel cell and the polar jet are strengthened, accompanied by a strengthened subtropical jet. These seasonal differences are linked to the differences in the configuration of the polar jet and the subtropical jet in the Southern Hemisphere.
引用
收藏
页码:881 / 895
页数:15
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