Supported by the Natural Science Foundation of China under Grant No.40333028;the Key Project of Science and Technology Department of Zhejiang Province under Grant No.2007C13G1610002
Self-organization of typhoon vortex in a baroclinic environment is studied based on eight numerical experiments with the fifth-generation Pennsylvania State University/National Center for Atmospheric Research (PSU/N...
the project of the National Natural Science Foundation of China under Grant No.40333028;Gansu Province Tenth Five Plan Key Project(CGS012-A45-118).
In the context of advection dynamics, 19 experiments (Exps.) are performed using a quasi-geostrophic barotropic vorticity equation model to explore the condition for the mergence of binary vortices and the self-orga...
Supported by the Key Project of National Natural Science Fbundation of China under Grant No. 40333028.
In this paper, the self-organization process of the initially scattered 12 meso-β and -γ scale vortices evolving into a synoptic-scale typhoon-like vortex in the context of advection dynamics is numerically explored...