Numerical Modellings of Properties of the Summer Quasi-Stationary Circulation Systems and Their Monthly Variations

被引:5
作者
钱永甫
钱云
王谦谦
机构
[1] Department of Atmospheric Sciences
[2] Nanjing University
[3] Nanjing
[4] Nanjing Institute of Meteorology
关键词
Quasi-stationary circulation systems; Numerical modelling;
D O I
暂无
中图分类号
P434 [大气环流];
学科分类号
0706 ; 070601 ;
摘要
<正> An ocean-atmosphere and land-air coupled numerical model system is used to study the basic properties and the monthly time variations of the summer quasi-stationary circulation systems. It is found that either at the upper or at the lower levels of the atmosphere, the circulation patterns have a two-wave structure in the zonal direction at the mid and high latitudes of the Northern Hemisphere. Such a structure of circulation is totally matchable to that of the land-sea distribution there. It is proved, hence, that the land-sea distributive pattern is the fundamental cause for the summer quasi-stationary circulation pattern. The topography in the globe is the secondary factor for circulation systems. The circulation centres of the quasi-stationary systems are always located in certain areas due to the thermodynamic contrast between land and sea.From the time evolutions of the circulation systems it is seen that the change is larger at the beginning period of the time integration, it is because of using t
引用
收藏
页码:399 / 407
页数:9
相关论文
共 6 条
[1]  
Qian (1981) , Influence of the Tibetan Plateau on cumulative and diurnal changes of weather and climate in summer, Mon.Wea. Kuo,H. L. and Y. F. Review .
[2]  
Kasahara (1970) , A January simulation experiment with the two-layer version of the NCAR globa1 circulation model, Mon.Wea. Washington,W. M. and A. Review .
[3]  
Qian (1982) , Numerical simulation of the development of mean monsoon circulation in July,Mon.Wea. Kuo,H. L. and Y. F. Review .
[4]  
Wang (1993) , Simulated properties of the climate in the summer monsoon area, J.Trop. Qian,Y. F. and Q. Q. Met .
[5]  
Wang (1984) , A numerical simulation of diurnal variations of meteorological fields in summer,Adv. Qian,Y. F. and Q. Q. Atmospheric Science .
[6]  
Gates (1980) , The January and July performance of the OSU two-level atmospheric general circulation model, J Atmos. Schlesinger,M. E. and W. L. Science .