Numerical simulation of vortex roll development during a cold air outbreak

authored by
D. Etling, S. Raasch
Abstract

Cold air outbreaks can be identified by the formation of cloud streets downwind from a land-sea boundary, as can be seen in numerous satellite pictures. These cloud streets are caused by horizontal roll vortices which in turn are due to dynamic and convective instability of the planetary boundary layer over sea. The development of these roll vortices is simulated with a numerical model and compared to observations obtained over the Bering Sea. Vertical heat transport is found to be due to turbulent diffusion in the initial stage of a cold air outbreak before organized roll vortices contribute to the heat flux in the higher levels of the boundary layer. The influence of a capping inversion on the dynamic and convective instability is also elucidated.

Organisation(s)
Institute of Meteorology and Climatology
Type
Article
Journal
Dynamics of atmospheres and oceans
Volume
10
Pages
277-290
No. of pages
14
ISSN
0377-0265
Publication date
01.1987
Publication status
Published
Peer reviewed
Yes
ASJC Scopus subject areas
Oceanography, Geology, Computers in Earth Sciences, Atmospheric Science
Electronic version(s)
https://doi.org/10.1016/0377-0265(87)90021-2 (Access: Closed)