Influences of sea surface temperature and ground wetness on Asian summer monsoon

被引:2
作者
Yang, S [1 ]
Lau, KM [1 ]
机构
[1] NASA, Goddard Space Flight Ctr, Atmospheres Lab, Greenbelt, MD 20771 USA
关键词
D O I
10.1175/1520-0442(1998)011<3230:IOSSTA>2.0.CO;2
中图分类号
P4 [大气科学(气象学)];
学科分类号
0706 ; 070601 ;
摘要
The authors have conducted a series of experiments with a general circulation model to understand the influences of sea surface temperature (SST) and ground wetness (GW) (measured by snow amount and soil moisture content) on the Asian summer monsoon. The experiments are designed to illustrate the dominant features of monsoon response to SST and GW forcings and to delineate the relative importance of each forcing function in contributing to the variability of the monsoon. Results indicate that ocean basin-scale SST anomalies exert a stronger control on the interannual variability of the monsoon compared to GW anomalies. The impact of SST anomalies on the monsoon appears nonlinear with respect to warm and cold events. The monsoon is weakened during the warm events but changes less noticeably during the cold events. The diminution of monsoon circulation associated with the warm SST anomalies is accompanied by a broad-scale reduction in water vapor convergence and monsoon rainfall. Results also indicate that, following wet land surface conditions (enhanced snow and soil moisture) in the Asian continent during previous cold seasons, the summer monsoon becomes moderately weaker. Antecedent land surface processes mainly influence the early part of the monsoon. Wetter and colder conditions occur in the Asian continent during warm SST events. This results in reduced land-sea thermal contrast, which reinforces the weak monsoon anomalies produced initially by warm SST forcing. These interactive forcings are also responsible for the changes in the winter-spring westerlies over subtropical Asia, which are key precursory signals for the subsequent summer monsoon. It should be pointed out that this study is conducted for the climate decade of 1979-88 only. The general robustness of the results needs to be explored by further investigations. In addition, chaotic features may have affected the results because of sampling errors.
引用
收藏
页码:3230 / 3246
页数:17
相关论文
共 50 条
[21]   THE EFFECTS OF SEA SURFACE TEMPERATURE OVER THE EQUATORIAL WESTERN PACIFIC AND THE INDIAN OCEAN ON THE ASIAN SUMMER MONSOON [J].
倪允琪 ;
钱永甫 ;
林元弼 .
Acta Meteorologica Sinica, 1989, (03) :375-394
[22]   Sensitivity of the Asian summer monsoon to aspects of sea-surface-temperature anomalies in the tropical Pacific Ocean [J].
Soman, MK ;
Slingo, J .
QUARTERLY JOURNAL OF THE ROYAL METEOROLOGICAL SOCIETY, 1997, 123 (538) :309-336
[23]   The Interdecadal Variation of Relationship between Indian Ocean Sea Surface Temperature and East Asian Summer Monsoon [J].
Kim, Won-Mo ;
Jhun, Jong-Ghap ;
Moon, Byung-Kwon .
JOURNAL OF THE KOREAN EARTH SCIENCE SOCIETY, 2008, 29 (01) :45-59
[24]   Sea surface temperature associations with the late Indian summer monsoon [J].
P. Terray ;
P. Delecluse ;
S. Labattu ;
L. Terray .
Climate Dynamics, 2003, 21 :593-618
[25]   TROPICAL SEA SURFACE TEMPERATURE ANOMALY AND INDIAN SUMMER MONSOON [J].
朱亚芬 ;
钱维宏 ;
叶谦 .
ActaMeteorologicaSinica, 1999, (02) :154-163
[26]   Sea surface temperature associations with the late Indian summer monsoon [J].
Terray, P ;
Delecluse, P ;
Labattu, S ;
Terray, L .
CLIMATE DYNAMICS, 2003, 21 (7-8) :593-618
[27]   Relation between sea surface temperature and Asian monsoon characteristics [J].
Rubinshtejn, K.G. ;
Ignatov, R.Yu. ;
Egorova, E.N. .
2001, Gidrometeoizdat
[28]   Interdecadal Variability of East Asian Summer Monsoon: the roles of Sea Surface Temperature and direct Atmospheric Radiative Forcings [J].
Zeng, Gang ;
Yu, Ying ;
Li, Zhongxian ;
Deng, Weitao ;
Li, Chunhui .
PROCEEDINGS OF THE 2010 INTERNATIONAL CONFERENCE ON APPLICATION OF MATHEMATICS AND PHYSICS, VOL 1: ADVANCES ON SPACE WEATHER, METEOROLOGY AND APPLIED PHYSICS, 2010, :48-53
[29]   Did recent sea surface temperature warming reinforce the extreme East Asian summer monsoon precipitation in 2020? [J].
Mun, Taeho ;
Park, Haerin ;
Cha, Dong-Hyun ;
Song, Chang-Keun ;
Min, Seung-Ki ;
Son, Seok-Woo .
WEATHER AND CLIMATE EXTREMES, 2024, 44
[30]   THE EFFECTS OF SEA SURFACE TEMPERATURE ANOMALIES OVER THE MID-LATITUDE WESTERN PACIFIC ON THE ASIAN SUMMER MONSOON [J].
倪允琪 ;
钱永甫 .
Acta Meteorologica Sinica, 1991, (01) :28-39