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Impact of swell on simulations using a regional atmospheric climate model Cover

Impact of swell on simulations using a regional atmospheric climate model

Open Access
|Jan 2009

Abstract

When long, fast swell waves travel in approximately the same direction as the wind, the surface stress is reduced compared with under wind-sea conditions. Using measurements from the OØstergarnsholm site in the Baltic Sea, new expressions of the roughness length were developed for wind sea and swell. These new expressions were implemented in the RCA3 regional climate model covering Europe. A 3-year simulation and two case studies using the wavefield from the ECMWF reanalysis (ERA-40) were analysed using the improved formulations. Wind-following swell led to a significant reduction of mean wind stress and heat fluxes. The mean surface layer wind speed was redistributed horizontally and the marine boundary layer cooled and dried slightly. This cooling was most pronounced over North Sea and the Norwegian Sea (almost 0.2°C annually on average) whereas the drying was most pronounced over the Mediterranean Sea (almost 0.4 g kg-1). Somewhat less convective precipitation and low-level cloudiness over the sea areas were also indicated, in particular over the Mediterranean Sea. The impact on the atmosphere, however, is significantly locally greater in time and space.

Language: English
Page range: 527 - 538
Submitted on: Oct 16, 2008
Accepted on: Mar 16, 2009
Published on: Jan 1, 2009
Published by: Stockholm University Press
In partnership with: Paradigm Publishing Services

© 2009 Björn Carlsson, Anna Rutgersson, Ann-Sofi Smedman, published by Stockholm University Press
This work is licensed under the Creative Commons Attribution 4.0 License.