Supported by the National(Key)Basic Research and Development(973)Program of China(2017YFA0603802 and 2015CB453200);National Natural Science Foundation of China(41630423,41475084,41575043,and 41375095);US National Science Foundation(AGS-1643297);Jiangsu Province Projects of China(BK20150062 and R2014SCT001);US National Research Council(N00173-16-1-G906);China Priority Academic Program Development of Jiangsu Higher Education Institutions(PAPD);SOEST contribution number 10418;IPRC contribution number 1330;ESMC contribution 216
The impact of the boreal summer intraseasonal oscillation (BSISO) on extreme hot and cool events was investig-ated, by analyzing the observed and reanalysis data for the period from 1983 to 2012. It is found that th...
Supported by the National(Key)Basic Research and Development(973)Program of China(2017YFA0603802 and 2015CB453200);National Natural Science Foundation of China(41630423,41475084,41575043,and 41375095);US National Science Foundation(AGS-1643297);NRL grant(N00173-16-1-G906);Jiangsu Projects(BK20150062 and R2014SCT001);Priority Academic Program Development of Jiangsu Higher Education Institutions(PAPD)
This study investigates the impact of low-frequency(intraseasonal and interannual) steering flows on straight northward-moving(defined as a meridional displacement two times greater than the zonal displacement) typhoo...
Supported by the National Natural Science Foundation of China(41575056,41775058,41575043,and 41375095);National(Key)Basic Research and Development(973)Program of China(2015CB452803);National Key Research Project(2017YFA0603802);Key University Science Research Project of Jiangsu Province(14KJA170005);Priority Academic Program Development of Jiangsu Higher Education Institutions(PAPD)
The sensitivity of tropical cyclone(TC) intensification to the ambient rotation effect under vertical shear is investigated. The results show that the vortices develop more rapidly with intermediate planetary vortic...
Supported by the National Key Research and Development Program(2017YFA0603802,2015CB453200);National Natural Science Foundation of China(41630423,41475084,41575043,41375095);United States National Science Foundation(AGS-1565653);Jiangsu Province Natural Science Foundation Key Project(BK20150062);Jiangsu Shuang-Chuang Team Fund(R2014SCT001);Priority Academic Program Development of Jiangsu Higher Education Institutions(PAPD)
The western Noah Pacific anomalous anticyclone (WNPAC) is an important atmospheric circulation system that conveys El Nifio impact on East Asian climate. In this review paper, various theories on the formation and m...
Supported by the National(Key)Basic Research and Development(973)Program of China(2015CB453200);National Natural Science Foundation of China(41475084,41630423,41575052,and 41375095);US National Science Foundation(AGS-1643297);US Office of Naval Research(N00014-16-12260);US Naval Research Laboratory(N00173-16-1-G906);Jiangsu Natural Science Foundation Key Project(BK20150062)of China;Jiangsu Shuang-Chuang Team Fund(R2014SCT001)of China;SOEST contribution number 9819;IPRC contribution number 1211;ESMC number 126
The second Madden–Julian Oscillation(MJO)event during the field campaign of the Dynamics of the MJO/Cooperative Indian Ocean Experiment on Intraseasonal Variability in the Year 2011(DYNAMO/CINDY2011)exhibi ted an...
Supported by the National(Key)Basic Research and Development(973)Program of China(2015CB453200);National Natural Science Foundation of China(41475084 and 41375095);Naval Research Laboratory(N00173-16-1-G906);Jiangsu Natural Science Key Project(BK20150062);Jiangsu Shuang-Chuang Team(R2014SCT001);Priority Academic Program Development of Jiangsu Higher Education Institutions(PAPD);SOEST contribution number 9620;IPRC contribution number 1187;ESMC number 099
The interannual variations of intensity of the Madden-Julian Oscillation(MJO) during boreal winter are investigated by using the observed outgoing longwave radiation(OLR) and the reanalysis data of ECMWF and NCEP....
Supported by the National Basic Research Program of China(2014CB953901);National Natural Science Foundation of China(41330423 and 41375095);Natural Science Foundation of Guangdong Province,China(2014A030310432)
The western North Pacific subtropical high (WNPSH) is an important circulation system that impacts the East Asian summer climate. The interannual variability of the WNPSH is modulated by tropical air-sea interaction...
Supported by the United States National Science Foundation(AGS-1106536);Office of Naval Research(N00014-1210450);China National Natural Science Foundation(41375095);China Meteorological Administration Special Public Welfare Research Fund(GYHY201306032)
The Madden-Julian oscillation (MJO) is a dominant atmospheric low-frequency mode in the tropics. In this review article, recent progress in understanding the MJO dynamics is described. Firstly, the fundamental physi...