supported by the National Key R&D Program of China (2022YFF0801602);the High-Performance Computing Center of Nanjing University of Information Science and Technology for their support of this work
Winter precipitation over eastern China displays remarkable interannual variability,which has been suggested to be closely related to El Niño-Southern Oscillation(ENSO).This study finds that ENSO impacts on eastern Ch...
the National Natural Science Foundation of China(Grant Nos.42005029 and 42130504);the Research Program on Decision Services of China Meteorological Administration(Nos.JCZX2023026 and JCZX2022021).
This study investigates the evolution of an extreme anomalous anticyclone(AA)event over Northeast Asia,which was one of the dominant circulation systems responsible for the catastrophic extreme precipitation event in ...
Supported by the National Key Research and Development Program of China(2020YFA0608000);National Natural Science Foundation of China(42088101 and 42030605)。
Owing to limited observations,it remains unknown whether the impact of El Niño-Southern Oscillation(ENSO)on the Indian Ocean-Northwest Pacific(IO-NWP)climate showed decadal changes in the early 20th century.Using mult...
This study investigates the relationship between circulation patterns and austral summer temperature anomalies in southern Africa. The results show that the formation of continental lows tends to increase the thicknes...
As is known, the Great Red Spot (GRS) is one of the most mysterious sights in the solar system and is a strong storm that is quite large. According to the laws of hydrodynamics and gas dynamics, it should have disappe...
supported by the National Natural Science Foundation of China(No.41976002);the National Key R&D Plan of China(Nos.2017YFC0305904,2016YFC0301201).
Tropical storms(TSs)can induce sea surface cooling,freshening,and phytoplankton blooms.The dissolved oxygen(DO)concentration response to TSs within an anticyclone is still unclear due to the rarity of in situ observat...
supported by the National Natural Science Foundation of China(Grant Nos.42125501&42088101)。
This study demonstrates the main physical mechanism for the maintenance of the western North Pacific(WNP)anomalous anticyclone(WNPAC)during the El Niño decaying summer by analyzing the respective effects of the cold s...
supported jointly by the National Key Research and Development Program of China[grant number 2019YFC1510201];the National Natural Science Foundation of China[grant number 41975073].
To better understand the relationship between anticyclones in Siberia and cold-air activities and temperature changes in East Asia,this study proposes a 2D anticyclone identification method based on a deep-learning mo...
sponsored by Strategic Priority Research Program of the Chinese Academy of Science[grant No.XDA17010106];the National Key Research and Development Program of China[grant Nos.2018YFC1505703 and 2018YFC1506704].
During the Asian summer monsoon(ASM)season,the process of stratosphere-troposphere exchange significantly affects the concentration and spatial distribution of chemical constituents in the upper troposphere and lower ...
supported by National Key R&D Program of China(2017YFA0604901,2017YFA0604902);National Natural Science Foundation of China(42005013).
Marine heatwaves(MHWs)have been frequently observed worldwide,causing devastating impacts on marine organisms and ecosystems,but the trend of MHWs is still unclear in the South China Sea(SCS).Here,the long-term trend ...