Annual Variation of Midlatitude Precipitation

Author:

Chen Tsing-Chang1,Huang Wan-Ru1,Takle Eugene S.1

Affiliation:

1. Atmospheric Science Program, Department of Geological and Atmospheric Sciences, Iowa State University, Ames, Iowa

Abstract

Abstract Annual variation of midlatitude precipitation and its maintenance through divergent water vapor flux were explored by the use of hydrological variables from three reanalyses [(NCEP–NCAR, ECMWF Re-Analysis (ERA), and Goddard Earth Observing System (GEOS-1)] and two global precipitation datasets [Climate Prediction Center (CPC) Merged Analysis of Precipitation (CMAP) and Global Precipitation Climatology Project (GPCP)]. Two annual variation patterns of midlatitude precipitation were identified:Tropical–midlatitude precipitation contrast: Midlatitude precipitation along storm tracks over the oceans attains its maximum in winter and its minimum in summer opposite to that over the tropical continents.Land–ocean precipitation contrast: The annual precipitation variation between the oceans and the continent masses exhibits a pronounced seesaw.The annual variation of precipitation along storm tracks of both hemispheres follows that of the convergence of transient water vapor flux. On the other hand, the land–ocean precipitation contrast in the Northern Hemisphere midlatitudes is primarily maintained by the annual seesaw between the divergence of stationary water vapor flux over the western oceans and the convergence of this water vapor flux over the eastern oceans during winter. The pattern is reversed during the summer. This divergence–convergence exchange of stationary water vapor flux is coupled with the annual evolution of upper-level ridges over continents and troughs over the oceans.

Publisher

American Meteorological Society

Subject

Atmospheric Science

Reference20 articles.

1. An observational study of the Northern Hemisphere wintertime circulation.;Blackmon;J. Atmos. Sci,1977

2. Global water vapor flux and maintenance during FGGE.;Chen;Mon. Wea. Rev,1985

3. Global-scale intraseasonal and annual variation of divergent water-vapor flux.;Chen;Meteor. Atmos. Phys,1990

4. Aliasing of the semidiurnal cycle in the depiction of global atmospheric circulation.;Chen;Bull. Amer. Meteor. Soc,2000

5. Low-frequency variations in the atmospheric branch of the global hydrological cycle.;Chen;J. Climate,1995

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