SEA-SURFACE TEMPERATURE IN THE SOUTH CHINA SEA - AN INDEX FOR THE ASIAN MONSOON AND ENSO SYSTEM

Citation
T. Ose et al., SEA-SURFACE TEMPERATURE IN THE SOUTH CHINA SEA - AN INDEX FOR THE ASIAN MONSOON AND ENSO SYSTEM, Journal of the Meteorological Society of Japan, 75(6), 1997, pp. 1091-1107
Citations number
32
ISSN journal
00261165
Volume
75
Issue
6
Year of publication
1997
Pages
1091 - 1107
Database
ISI
SICI code
0026-1165(1997)75:6<1091:STITSC>2.0.ZU;2-W
Abstract
Interannual variability of the sea surface temperature anomalies (SSTA ) over the South China Sea (SCS) is recognized as an index for the Asi an monsoon and ENSO system because of its special geographical locatio n for that system. The following results are obtained by the statistic al analysis of the observational data. (1) In the northern winter, the SCS SSTA are quite sensitive to the longitudinal shift of global wind anomalies associated with the equatorial Pacific SSTA. This fact is r elated to that the SCS SSTA and the neighbor SSTA have strong biennial oscillation. (2) When the global wind anomalies are shifted eastward in the winter (BO-type years), the tropical eastern Pacific SSTA tend to change in the following spring. On the other hand, when those wind anomalies are shifted westward (LF-type years), the eastern Pacific SS TA tend to be maintained through the year. The associated differences between the BO and LF-type years are found in the seasonal change of t he low-level tropical wind anomalies from the preceding summer through winter. (3) The northern summer SCS SSTA seem to be controlled by in- situ low-level wind anomalies. Further more, easterly anomalies over S outh Asia and the tropical western Pacific and westerly anomalies over East Asia are found in the lower atmosphere for the positive SCS SSTA . It is also shown that the summer SCS SSTA have a statistical relatio nship with the equatorial central Pacific SSTA in the preceding winter . This fact suggests a relationship between the summer Asian monsoon a nd the winter phase of ENSO.