Multichannel singular spectrum analysis of the axial atmospheric angular momentum

被引:0
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作者
Leonid Zotov [1 ]
NSSidorenkov [2 ]
ChBizouard [3 ]
CKShum [4 ,5 ]
Wenbin Shen [6 ]
机构
[1] National Research University Higher School of Economics,Moscow Institute of Electronics and Mathematics
[2] Hydro-Meteorological Center of Russia,Global Atmospheric Circulation Laboratory
[3] SYRTE, Observatoire de Paris, PSL Research University CNRS,Sorbonne Universites,UPMC Univ
[4] Division of Geodetic Science,School of Earth Sciences,The Ohio State University
[5] Institute of Geodesy & Geophysics, Chinese Academy of Sciences
[6] Department of Geophysics, School of Geodesy and Ceomatics, Key Laboratory of Geospace Environment and Geodesy of Ministry of education,Wuhan
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中图分类号
P183.31 []; P434 [大气环流];
学科分类号
摘要
Earth's variable rotation is mainly produced by the variability of the AAM(atmospheric angular momentum). In particular, the axial AAM component X3, which undergoes especially strong variations,induces changes in the Earth's rotation rate. In this study we analysed maps of regional input into the effective axial AAM from 1948 through 2011 from NCEP/NCAR reanalysis. Global zonal circulation patterns related to the LOD(length of day) were described. We applied MSSA(Multichannel Singular Spectrum Analysis) jointly to the mass and motion components of AAM, which allowed us to extract annual, semiannual, 4-mo nth, quasi-biennial, 5-year, and low-frequency oscillations. PCs(Principal components) strongly related to ENSO(El Nino southern oscillation) were released. They can be used to study ENSO-induced changes in pressure and wind fields and their coupling to LOD. The PCs describing the trends have captured slow atmospheric circulation changes possibly related to climate variability.
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页码:433 / 442
页数:10
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