the Strategic Priority Research Program of the Chinese Academy of Sciences (XDA20100304);Second Tibetan Plateau Scientific Expedition and Research Program (2019QZKK0208);National Natural Science Foundation of China (41790471);National Key Scientific Research Plan of China (2016YFA0602200)。
We use 71-yr(1948–2018) reanalysis data to investigate the interdecadal variation in the atmospheric heat source(Q1) over the Tibetan Plateau and surrounding Asian monsoon region(AMTP) and its effect on the Northern ...
Supported by the National Key Research and Development Program of China(2018YFC1505806);US NOAA(NA18OAR4310298);US NSF(AGS-1643297);National Natural Science Foundation of China(41875069,41575052,and 41575043);University of Hawaii SOEST(10867);IPRC(1418);National Key Research and Development Program of China Health Risk Assessment Program(2018YFA0606203)。
Shanghai experienced the longest rainy days in 2018/2019 winter since 1988. The physical cause of such an unusual climate condition was investigated through the diagnosis of observational data. From a seasonal perspec...
Supported by the National Key Research and Development Program of China(2018YFC1505603);National Science and Technology Support Program of China(2015BAC03B04);Youth Talent Development Program of China Meteorological Administration(CMA);National Natural Science Foundation of China(41205039 and 41776039);Forecasters’ Project of CMA(CMAYBY2019-149)
In 2018,China experienced the hottest summer since 1961.The maximum,mean,and minimum temperatures all reached the highest.Air temperatures in most regions were much higher than normal;in northern China especially,the ...
Supported by the National Key Research and Development Program of China(2016YFB0200801,2017YFA0604300,and 2018YFC1507003);Strategic Priority Research Program of the Chinese Academy of Sciences(XDA20100300);Basic Research Fund of the Chinese Academy of Meteorological Sciences(2017Y004)
The ECHAM5 model is coupled with the widely used Common Land Model(CoLM). ECHAM5 is a state-of-theart atmospheric general circulation model incorporated into the integrated weather and climate model of the Chinese Aca...
Supported by the National Natural Science Foundation of China(41606011 and 91637210);National Key Research and Development Program(2016YFE0102400,2016YFA0600602,and 2018YFC1506002);Basic Scientific Research and Operation Funds of the Chinese Academy of Meteorological Sciences(2017Y007);Startup Funds for Introduced Talents of Nanjing University of Information Science&Technology;Open Project Funds of the State Key Laboratory of Numerical Modeling for Atmospheric Sciences and Geophysical Fluid Dynamics;Open Project Funds of the State Key Laboratory of Loess and Quartary Geology
We present an overview of the El Ni?o–Southern Oscillation(ENSO) stability simulation using the Chinese Academy of Meteorological Sciences climate system model(CAMS-CSM). The ENSO stability was quantified based on 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);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(2011CB403406);Priority Academic Program Development(PAPD)of Jiangsu Higher Education Institutions
Seasonal variation features of aerosol optical depth (AOD) over East China and India in association with the Asian monsoon system are investigated, based on the latest AOD data derived from the Moderate Resolution I...
Supported by the National Natural Science Foundation of China(41375071);Project PE16010 of the Korea Polar Research Institute
This paper analyzes the possible influence of boreal winter Arctic Oscillation/North Atlantic Oscillation (AO/ NAO) on the Indian Ocean upper ocean heat content in summer as well as the summer monsoonal circulation....
Supported by the National Natural Science Foundation of China(91337216);Chinese Academy of Sciences Project(XDA11010402);China Meteorological Administration Special Public Welfare Research Fund(GYHY201406001);Special Program for Applied Research on Super Computation of the NSFC–Guangdong Joint Fund(the second phase)
The two leading modes of the interannual variability of the tropical Indian Ocean (TIO) sea surface temperature (SST) anomaly are the Indian Ocean basin mode (IOBM) and the Indian Ocean dipole mode (IODM) from...
Supported by the National Natural Science Foundation of China(41375064 and 41630424);National Science and Technology Support Program of China(2015BAC03B03)
In this study, interannual variability of summer rainfall over the northern part of China (NPC) and associated circulation patterns were investigated by using long-term (1961-2013) observational and reanalysis dat...