Supported by the National Natural Science Foundation of China(42030610);National Key Research and Development Program of China for Intergovernmental Cooperation(2019YFE0110100).
The cause–effect relationship between meso-γ-scale rotation and extreme short-term precipitation events remains elusive in mesoscale meteorological research.We aimed to elucidate this relationship by analyzing a rai...
Supported by the National Key Research and Development Program of China(2017YFC1501806,2018YFC1507404);National Natural Science Foundation of China(42075083)。
In this study,the unprecedented extreme rainfall event during 19-20 July 2021,which caused devastating flooding in Zhengzhou City and its nearby areas,is examined based on observational data analysis and WRF model 40-...
Supported by the National Natural Science Foundation of China(41175047);National Key Basic Research and Development Program of China(2013CB430104);Forecaster Special Project of China Meteorological Administration Forecaster(CMAYBY2019-47);Zhejiang Science and Technology Plan Project(2016QN02);Major Project of Zhejiang Provincial Department of Science and Technology(2017C03035);Hangzhou Weather Bureau(ZJZBC-19-9103)。
During a hailstorm event,near-surface meso-γvortices along a convergence line interact with hail cells.Herein we investigate this interaction by using observational data and a high-resolution simulation of a hailstor...
Supported by the National Key Basic Research and Development (973) Program of China (2004CB418300)
The evolution of a mesoscale convective system (MCS) that caused strong precipitation in the northern area of Dabie Mountain during 21 22 June 2008 is analyzed, along with the evolution of the associated meso-β-sca...
Supported by the National Natural Science Foundation of China under Grant No.40575029;the Commonweal Special Project "Study of flood-leading rainstorm forecast and warning system in South China" of the Ministry of Science and Technology.
Numerical simulation of a heavy rainfall case in Henan area during 16-17 July 2004 is performed using the LASG (State Key Laboratory of Numerical Modelling for Atmospheric Sciences and Geophysical Fluid Dynamics) me...
supported by the Key Technologies R & D Programme of Jiangsu Province under grants number BE20011349
Under the outer-region effect of Typhoon Prapiroon (No.0012),an exceptional rainstorm occurred in northeastern Jiangsu Province from 0200 BT (Beijing Time) 30 August to 0800 BT 31 August 2000,which is an event of noti...
supported by the Air Force Foundation under Grant No.KJ99099
Large-scale and mesoscale analyses are made for extremely heavy rain (EHR) and meso-β scale low vortex (MSLV) in Jiading District of Shanghai Municipality during 6-7 July 2001.It is shown that the EHR forms in the si...
Supported by the National Key Program for Developing Basic Science(G1998040907)
In this paper the Morlet complex wavelet {unction was applied to analyze the evolution features of multi-scale wave-intensity during a torrential rain process.Separating the suhsynoptic scale system on temperature of ...
This work was sponsored by Nanjing University Postdoctoral Foundation,the Science Foundation of Jiangsu Province Education Bureau(00KJB170001)and NSF of Jiangsu(BK99020),the State Key Basic Program:CHERES and the National Natural Science Foundation of Ch
By means of the Penn State-NCAR Mesoscale Model Version 5(MM5)with a horizontal resolution of 20 km.the maintainable mechanism of Meso-β scale Convective System(Mβ CS)has been investigated on the basis of simulation...
A hail process in Huaihe River Basin observed by CINRAD Doppler radar on 12May 2000 has been simulated by using nonhydrostatic mesoscale numerical model MM5.The simulated wind field is analyzed and compared with Doppl...