Precipitation Response to the Gulf Stream in an Atmospheric GCM*

Author:

Kuwano-Yoshida Akira1,Minobe Shoshiro2,Xie Shang-Ping3

Affiliation:

1. Earth Simulator Center, Japan Agency for Marine-Earth Science and Technology, Yokohama, Japan

2. Department of Natural History Sciences, Graduate School of Science, Hokkaido University, Sapporo, Japan

3. International Pacific Research Center, and Department of Meteorology, University of Hawaii at Manoa, Honolulu, Hawaii

Abstract

Abstract The precipitation response to sea surface temperature (SST) gradients associated with the Gulf Stream is investigated using an atmospheric general circulation model. Forced by observed SST, the model simulates a narrow band of precipitation, surface convergence, and evaporation that closely follows the Gulf Stream, much like satellite observations. Such a Gulf Stream rainband disappears in the model when the SST front is removed by horizontally smoothing SST. The analysis herein shows that it is convective precipitation that is sensitive to SST gradients. The Gulf Stream anchors a convective rainband by creating surface wind convergence and intensifying surface evaporation on the warmer flank. Deep convection develops near the Gulf Stream in summer when the atmosphere is conditionally unstable. As a result, a narrow band of upward velocity develops above the Gulf Stream throughout the troposphere in summer, while it is limited to the lower troposphere in other seasons.

Publisher

American Meteorological Society

Subject

Atmospheric Science

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