Roles of Tibetan Plateau vortices in the heavy rainfall over southwestern China in early July 2018

Atmospheric Research - Tập 245 - Trang 105059 - 2020
Lun Li1, Renhe Zhang2,3, Peili Wu4, Min Wen1, Jianping Duan5
1State Key Laboratory of Severe Weather, Chinese Academy of Meteorological Sciences, Beijing, China
2Institute of Atmospheric Sciences, Fudan University, Shanghai, China
3CAS Center for Excellence in Tibetan Plateau Earth Sciences, Beijing, China
4Met Office Hadley Centre, Exeter EX1 3PB, United Kingdom
5Institute of Atmospheric Physics, Chinese Academy Science, Beijing, China

Tài liệu tham khảo

Bao, 2013, Evaluation of NCEP–CFSR, NCEP-NCAR, ERA-Interim, and ERA-40 Reanalysis Datasets against Independent Sounding Observations over the Tibetan Plateau, J. Clim., 26, 206, 10.1175/JCLI-D-12-00056.1 Chen, 2008, The observed facts analysis of southwest vortex from 2000-2007, Plateau Mount. Meteorol. Res., 28, 59 Curio, 2019, Climatology of Tibetan Plateau vortices in reanalysis data and a high-resolution global climate model, J. Clim., 32, 1933, 10.1175/JCLI-D-18-0021.1 Feng, 2014, A 10-yr climatology of Tibetan Plateau vortices with NCEP climate forecast system reanalysis, J. Appl. Meteor. Climatol., 53, 34, 10.1175/JAMC-D-13-014.1 Frank, 1977, The structure and energetics of the tropical cyclone I: storm structure, Mon. Weath. Rev., 105, 1119, 10.1175/1520-0493(1977)105<1119:TSAEOT>2.0.CO;2 Gray, 1981 Huang, 2015, A 30-year climatology of the moving-out Tibetan Plateau vortex in summer and its influence on the rainfall in China, J. Tropical Meteor., 31, 827 Kosaka, 2011, Dynamics of interannual variability in summer precipitation over East Asia, J. Clim., 24, 5435, 10.1175/2011JCLI4099.1 Kuo, 1988, Numerical simulation of the 1981 Sichuan flood. Part I: evolution of a mesoscale southwest vortex, Mon. Wea. Rev., 116, 2481, 10.1175/1520-0493(1988)116<2481:NSOTSF>2.0.CO;2 Lhasa group for Tibetan Plateau meteorology research, 1981 Li, 2002 Li, 2004, The diagnostic analysis on the characteristics of large scale circulation corresponding to the sustaining and decaying of tropical cyclone after its landfall, Acta Meteor. Sin., 62, 167 Li, 2011, Diagnostic analysis of the evolution mechanism for a vortex over the Tibetan Plateau in June 2008, Adv. Atmos. Sci., 28, 797, 10.1007/s00376-010-0027-y Li, 2014, Diurnal variation in the occurrence frequency of the Tibetan Plateau vortices, Meteorog. Atmos. Phys., 125, 135, 10.1007/s00703-014-0325-5 Li, 2014, Effect of the atmospheric heat source on the development and eastward movement of the Tibetan Plateau vortices, Tellus A, 66, 24451, 10.3402/tellusa.v66.24451 Li, 2017, Genesis of southwest vortices and its relation to Tibetan Plateau vortices, Q. J. R. Meteor. Soc., 143, 2556, 10.1002/qj.3106 Li, 2018, Diurnal variation in the intensity of nascent Tibetan Plateau vortices, Q. J. R. Meteor. Soc., 144, 2524, 10.1002/qj.3343 Li, 2019, Structure characteristics of the vortices moving off the Tibetan Plateau, Meteorol. Atmos. Phys. Li, 2019, Development and eastward movement mechanisms of the Tibetan Plateau vortices moving off the Tibetan Plateau, Clim. Dyn., 52, 4849, 10.1007/s00382-018-4420-z Li, 2020, Evaluation of NCEP-FNL and ERA-interim data sets in detecting Tibetan Plateau vortices in May–August of 2000–2015, Earth Space Sci., 7, 10.1029/2019EA000907 Lin, 2015, Analysis of Tibetan Plateau vortex activities using ERA-Interim data for the period 1979–2013, J. Meteor. Res., 29, 720, 10.1007/s13351-015-4273-x Lu, 1986 Luo, 1992 Luo, 1994, Study on the vortex of the Qinghai-Xizang (Tibet) Plateau in summer, Sci. China Ser B., 37, 601 Markowski, 2010 Pan, 2008, A case study on the role of water vapor from Southwest China in downstream heavy rainfall, Adv. Atmos. Sci., 25, 563, 10.1007/s00376-008-0563-x Qiao, 1994 Tam, 2006, The origin and dispersion characteristics of the observed tropical summertime synoptic-scale waves over the western Pacifc, Mon. Wea. Rev., 134, 1630, 10.1175/MWR3147.1 Wang, 1987, Study of a heavy rain vortex formed over the eastern flank of the Tibetan Plateau, Mon. Wea. Rev., 115, 1370, 10.1175/1520-0493(1987)115<1370:SOAHRV>2.0.CO;2 Wang, 1993, A Diabatically driven mesoscale vortex in the lee of the Tibetan Plateau, Mon. Wea. Rev., 121, 2542, 10.1175/1520-0493(1993)121<2542:ADDMVI>2.0.CO;2 Wang, 2009, Statistical study on the Plateau low vortex activities, Plateau Meteor., 28, 64 Wei, 2014, Impact of Indian summer monsoon on the South Asian High and its influence on summer rainfall over China, Clim. Dyn., 43, 1257, 10.1007/s00382-013-1938-y Xiao, 2016, Analysis of typical sustained plateau vortexes after departure, Plateau Meteor., 35, 43 Yang, 1980 Ye, 1979 Yu, 2014, Observational facts of sustained departure plateau vortexes, J. Meteor. Res., 28, 296, 10.1007/s13351-014-3023-9 Yu, 2015, Circulation features of sustained departure plateau vortex at middle tropospheric level, Plateau Meteor., 34, 1540