Guangdong Major Project of Basic and Applied Basic Research(2020B0301030004);National Natural Science Foundation of China(41875114);Science and Technology Commission of Shanghai Municipality,China(23DZ1204703)。
The rapid intensification(RI)magnitude of tropical cyclones(TCs)over the western North Pacific(WNP)exhibits significant interannual variability and is influenced by multiple factors across various scales.These factors...
supported by the Postgraduate Research&Practice Innovation Program of Jiangsu Province(No.KYCX22_1136);the National Natural Scientific Foundation of China(No.42275037);the Basic Research Fund of CAMS(No.2023Z016);the Key Laboratory of South China Sea Meteorological Disaster Prevention and Mitigation of Hainan Province(No.SCSF202202);supported by the Jiangsu Collaborative Innovation Center for Climate Change。
At present,the identification of tropical cyclone remote precipitation(TRP)requires subjective participation,leading to inconsistent results among different researchers despite adopting the same identification standar...
jointly supported by the National Natural Science Foundation of China(Grant Nos.42075138 and 42375147);the Program on Key Basic Research Project of Jiangsu(Grant No.BE2023829)。
Tropical cyclones(TCs)are one of the most serious types of natural disasters,and accurate TC activity predictions are key to disaster prevention and mitigation.Recently,TC track predictions have made significant progr...
sponsored by the National Key Research and Development Program of China(Grant No.2021YFC3000804);the National Natural Science Foundation of China(Grant Nos.U2142206,42371076);Shanghai Science and Technology Commission Project(No.23DZ1204701);Shanghai Pilot Program for Basic Research(No.TQ20240209);the Basic Research Fund of Shanghai Typhoon Institute(Nos.2023JB05,2024JB04)。
Current simulation models considerably underestimate local-scale,short-duration extreme precipitation induced by tropical cyclones(TCs).This problem needs to be addressed to establish active response policies for TC-i...
supported by the National Natural Science Foundation of China(Grant number 42075072);support from The Startup Foundation for Introducing Talent of the Nanjing University of Information Science and Technology.
Idealized numerical simulations have been carried out to reveal the complexity in the development of asymmetric convection in a tropical cyclone(TC)under the influence of an environment with either uniform flow,vertic...
Supported by the National Key Research and Development Program of China(2022YFC3004200 and 2022YFC3003901).
After landfall,tropical cyclone(TC)remnants may maintain or even rejuvenate and incur catastrophic disasters.What leads to the revival of TC remnants over land remains elusive.In this study,the revival mechanism of Ty...
National Natural Science Foundation of China(42275123);Guangdong Basic and Applied Basic Research Foundation(2024A1515010508);Guangdong Provincial Marine Meteorology Science Data Center(2024B1212070014);Innova-tion Team of Severe Weather Mechanism and Forecasting Technology in the South China Sea of Guangdong Meteorolo-gical Service(GRMCTD202201);Science and Technology Research Project of Guangdong Meteorological Service(GRMC2022M02)。
The effects of sea surface temperature(SST)changes induced by tropical cyclone(TC)Bilis(0604)and its preceding TC,TC Ewiniar(0603),on the intensity of TC Bilis were investigated by using numerical experiments.The obse...
the support provided by the MoES-INCOIS fellowships as part of the Ph.D.program.This is INCOIS contribution number 540。
Tropical cyclones(TCs)create more disasters when they make landfall.Climatologically,the west coast of the Bay of Bengal(BoB),one of the most densely populated geographical regions over the globe,is more vulnerable to...
support of the Innovation and Development Special Program of the China Meteorological Administration(CXFZ2024J006);Shanghai Science and Technology Commission Project(23DZ1204701);the National Key Research and Development Program of China(2021YFC3000805);the Typhoon Scientific and Technological Innovation Group of the China Meteorological Administration(CMA2023ZD06).
In the operational forecasting of tropical cyclones(TCs),decoding TC warning messages from global centers,along with extracting,organizing,and storing useful track observations and forecasts,are fundamental tasks.The ...
This study reveals the possible future changes in tropical cyclone(TC)landfalling activity along the East Asian coast under different climate change scenarios based on global circulation model(GCM)simulations.Wefirst i...