期刊文献+

Predictability and dynamics of the rapid intensification of Super Typhoon Lekima (2019) 被引量:3

原文传递
导出
摘要 This study explores the effect of the initial axisymmetric wind structure and moisture on the predictability of the peak intensity of Typhoon Lekima(2019)through a 20-member ensemble forecast using the WRF model.The ensemble members are separated into Strong and Weak groups according to the maximum 10-m wind speed at 48 h.In our study of Lekima(2019),the initial intensity defined by maximum 10-m wind speed is not a good predictor of the intensity forecast.The peak intensity uncertainty is sensitive to the initial primary circulation outside the radius of maximum wind(RMW)and the initial secondary circulation.With greater absolute angular momentum(AAM)beyond the RMW directly related to stronger primary circulation,and stronger radial inflow,Strong group is found to have larger AAM import in lowlevel,helping to spin up the TC.Initial moisture in innercore is also critical to the intensity predictability through the development of inner-core convection.The aggregation and merger of convection,leading to the TC intensification,is influenced by both radial advection and gradient of system-scale vortex vorticity.Three sensitivity experiments are conducted to study the effect of model uncertainty in terms of model horizontal grid resolution on intensity forecast.The horizontal grid resolution greatly impacts the predictability of Lekima’s intensity,and the finer resolution is helpful to simulate the intensification and capture the observed peak value.
出处 《Frontiers of Earth Science》 SCIE CSCD 2022年第1期132-143,共12页 地球科学前沿(英文版)
基金 supported by National Key R&D Program of China(No.2018YFC1506404) National Natural Science Foundation of China(Grant No.41575107) in part by Shanghai Sailing Program(No.19YF1458700) the Research Program from Science and Technology Committee of Shanghai(No.19dz1200101) Science and Technology Project of Shanghai Meteorological Service(No.QM202006) Typhoon Scientific and Technological Innovation Group of Shanghai Meteorological Service.
  • 相关文献

参考文献4

二级参考文献26

  • 1ZHANG QingHong,WEI Qing,CHEN LianShou.Impact of landfalling tropical cyclones in China's Mainland[J].Science China Earth Sciences,2010,53(10):1559-1564. 被引量:10
  • 2卢文芳.上海地区热带气旋灾情的评估和灾年预测[J].自然灾害学报,1995,4(3):40-45. 被引量:33
  • 3Y. Noh,W. G. Cheon,S. Y. Hong,S. Raasch.Improvement of the K-profile Model for the Planetary Boundary Layer based on Large Eddy Simulation Data[J].Boundary - Layer Meteorology.2003(2)
  • 4G. J. Holland.Scale interaction in the Western Pacific Monsoon[J].Meteorology and Atmospheric Physics (-).1995(1-2)
  • 5Kuo, H-C,L-Y. Lin,,C-P. Chang,and R. T. Williarns.The formation of concentric vorticity structures in typhoons[].Journal of the Atmospheric Sciences.2004
  • 6Running S W,Hunt E R J.Generalization of a forest ecosystem process model for other biomes, BIOME-BGC and an application for global-scale models[].Scaling Physiological Processes:Leaf to Globe.1993
  • 7Lin Y L,Farley R D,Orville H D.Bulk parameterization of the snow field in a cloud model[].Journal of Climatology.1983
  • 8Holland GJ.The maximum potential intensity of tropical cyclones[].Journal of the Atmospheric Sciences.1997
  • 9Yuter,S,R.A.Houze.Three-dimensionalkinematic and microphysical evolution of Florida cu-mulonimbus.Part II: Frequency distributions of ver-tical velocity,reflectivity,and differential reflectivity[].Monthly Weather Review.1995
  • 10Hong S Y,Dudhia J,Chen S H.Arevised approach to ice-mi-crophysical processes for the bulk parameterization of cloud and precipitation[].Monthly Weather Review.2004

共引文献40

同被引文献27

引证文献3

二级引证文献3

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部