Atmospheric response to Indian Ocean Dipole forcing: changes of Southeast China winter precipitation under global warming

被引:0
作者
Ling Zhang
Frank Sielmann
Klaus Fraedrich
Xiefei Zhi
机构
[1] Nanjing University of Information Science and Technology,Key Laboratory of Meteorology Disaster, Ministry of Education (KLME)/Joint International Research Laboratory of Climate and Environment Change (ILCEC)/Collaborative Innovation Center on Forecast and
[2] Max Planck Institute for Meteorology,FEMD)
[3] Hamburg University,Meteorological Institute
来源
Climate Dynamics | 2017年 / 48卷
关键词
IOD; Atmospheric responses; Heating anomalies; Precipitation; Global warming;
D O I
暂无
中图分类号
学科分类号
摘要
To investigate the relationship between autumn Indian Ocean Dipole (IOD) events and the subsequent winter precipitation in Southeast China (SEC), observed fields of monthly precipitation, sea surface temperature (SST) and atmospheric circulation are subjected to a running and a maximum correlation analysis. The results show a significant change of the relevance of IOD for the early modulation of SEC winter precipitation in the 1980s. After 1980, positive correlations suggest prolonged atmospheric responses to IOD forcing, which are linked to an abnormal moisture supply initiated in autumn and extended into the subsequent winter. Under global warming two modulating factors are relevant: (1) an increase of the static stability has been observed suppressing vertical heat and momentum transports; (2) a positive (mid-level) cloud-radiation feedback jointly with the associated latent heating (apparent moisture sink Q2) explains the prolongation of positive as well as negative SST anomalies by conserving the heating (apparent heat source Q1) in the coupled atmosphere–ocean system. During the positive IOD events in fall (after 1980) the dipole heating anomalies in the middle and lower troposphere over the tropical Indian Ocean are prolonged to winter by a positive mid-level cloud-radiative feedback with latent heat release. Subsequently, thermal adaptation leads to an anticyclonic anomaly over Eastern India overlying the anomalous cooling SST of the tropical Eastern Indian Ocean enhancing the moisture flow from the tropical Indian Ocean through the Bay of Bengal into South China, following the northwestern boundary of the anticyclonic circulation anomaly over east India, thereby favoring abundant precipitation in SEC.
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页码:1467 / 1482
页数:15
相关论文
共 171 条
[1]  
Ackerman TP(1988)Heating rates in tropical anvils J Atmos Sci 45 1606-1623
[2]  
Liou KN(2001)Impact of the Indian Ocean Dipole on the relationship between the Indian monsoon rainfall and ENSO Geophys Res Lett 26 3001-3004
[3]  
Valero FPJ(2004)Decadal variability of the Indian Ocean dipole Geophys Res Lett 31 L24207-177
[4]  
Pfister L(2004)Decadal variability of the Indian Ocean dipole Geophys Res Lett 31 L24207-4530
[5]  
Ashok K(2003)Influence of the Indian Ocean Dipole on the Southern Oscillation J Meteorol Soc Jpn 81 169-94
[6]  
Guan Z(2005)Paramount impact of the Indian Ocean dipole on the East African short rains: ACGCM study J Clim 18 4514-280
[7]  
Yamagata T(2003)An observational study of the relationship between excessively strong short rains in coastal East Africa and Indian Ocean SST Mon Weather Rev 131 74-167
[8]  
Ashok K(2001)Fifty years of precipitation: some spatially remote teleconnnections Water Resour Manag 15 247-1007
[9]  
Chan WL(1997)Moisture transport, lower-tropospheric stability, and decoupling of cloud-topped boundary layers J Atmos Sci 54 148-623
[10]  
Motoi T(2009)Positive Indian Ocean dipole events precondition southeast Australia bushfires Geophys Res Lett 36 L19710-411