Forcing of the Antarctic Circumpolar Wave by El Nino-Southern Oscillation teleconnections

Authors
Citation
W. Cai et Pg. Baines, Forcing of the Antarctic Circumpolar Wave by El Nino-Southern Oscillation teleconnections, J GEO RES-O, 106(C5), 2001, pp. 9019-9038
Citations number
57
Categorie Soggetti
Earth Sciences
Journal title
JOURNAL OF GEOPHYSICAL RESEARCH-OCEANS
ISSN journal
21699275 → ACNP
Volume
106
Issue
C5
Year of publication
2001
Pages
9019 - 9038
Database
ISI
SICI code
0148-0227(20010515)106:C5<9019:FOTACW>2.0.ZU;2-1
Abstract
We address several issues regarding the Antarctic Circumpolar Wave (ACW). T hese include the extent to which the ACW is related to El Nino-Southern Osc illation (ENSO) cycles and the need to reconcile differences between the ob served zonal wavenumber 2 pattern and the wavenumber 3 pattern found in cou pled ocean-atmosphere models, In the present study we revisit the sea surfa ce temperature (SST) signal of the observed ACW. We find that the associate d SST variations may be decomposed into several empirical orthogonal functi ons (EOFs) that are linearly independent. The first four EOFs describe 84% of the total variance on timescales of 3-7 years, and superposition of SST signals of the four EOFs reproduces SST signals of the observed ACW. Given that EOF analysis can only describe standing oscillations, we then employ c omplex EOF (CEOF) analysis suitable for studying propagating waves. The fir st two CEOFs (denoted CEOFSST1 and 2) account for 70% of the total variance , and the SST variability reconstructed from them again reproduces the obse rved ACW. The real part of CEOFSST1 (44% of the total variance) is similar to the first real EOF (EOFSST1). Both EOFSST1 and CEOFSST1 may be identifie d with ENSO and have a wavenumber 2 zonal pattern in the southern middle-to -high latitudes. CEOFSST1 is the major constituent of the ACW in the period of 1981-1997. The associated atmospheric circulation displays a Pacific-So uth America (PSA) pattern. Statistical analyses demonstrate that the PSA pa ttern teleconnected to ENSO is the major mechanism that forces this princip al constituent of the ACW. CEOFSST2 (26% of the total variance) has a zonal wavenumber 3 pattern in the same latitude band, similar to that simulated by several coupled models. We suggest that if ENSO is not adequately resolv ed in coupled models but structures with zonal wavenumber 3 pattern are, th en the modeled ACW would appear to have a zonal wavenumber 3 pattern.