Characterization of the boundary layer at Dome C (East Antarctica) during the OPALE summer campaign
-
Published:2015-06-08
Issue:11
Volume:15
Page:6225-6236
-
ISSN:1680-7324
-
Container-title:Atmospheric Chemistry and Physics
-
language:en
-
Short-container-title:Atmos. Chem. Phys.
Author:
Gallée H., Preunkert S.ORCID, Argentini S., Frey M. M.ORCID, Genthon C.ORCID, Jourdain B., Pietroni I., Casasanta G., Barral H., Vignon E.ORCID, Amory C., Legrand M.
Abstract
Abstract. Regional climate model MAR (Modèle Atmosphérique Régional) was run for the region of Dome C located on the East Antarctic plateau, during Antarctic summer 2011–2012, in order to refine our understanding of meteorological conditions during the OPALE tropospheric chemistry campaign. A very high vertical resolution is set up in the lower troposphere, with a grid spacing of roughly 2 m. Model output is compared with temperatures and winds observed near the surface and from a 45 m high tower as well as sodar and radiation data. MAR is generally in very good agreement with the observations, but sometimes underestimates cloud formation, leading to an underestimation of the simulated downward long-wave radiation. Absorbed short-wave radiation may also be slightly overestimated due to an underestimation of the snow albedo, and this influences the surface energy budget and atmospheric turbulence. Nevertheless, the model provides sufficiently reliable information about surface turbulent fluxes, vertical profiles of vertical diffusion coefficients and boundary layer height when discussing the representativeness of chemical measurements made nearby the ground surface during field campaigns conducted at Concordia station located at Dome C (3233 m above sea level).
Publisher
Copernicus GmbH
Subject
Atmospheric Science
Reference48 articles.
1. Andreas, E. L.: Physically based model of the form drag associated with sastrugi. US Army Cold Regions Research and Engineering Laboratory, Hanover, NH, CRREL Report No CR 95–16, 12 pp., 1995. 2. Argentini, S. and Pietroni, I.: An Integrated Observing System for Boundary Layer Monitoring at Concordia Station, Antarctica, in: Integrated Ground-Based Observing Systems, edited by: Cimini, D., Marzano, F., and Visconti, G., Springer-Verlag, Berlin Heidelberg, 199–208, 2010. 3. Argentini, S., Pietroni, I., Mastrantonio, G., Petenko, I., and Viola, A.: Use of a high-resolution sodar to study surface-layer turbulence at night, Bound.-Lay. Meteorol., 143, 177–188, 2011. 4. Argentini, S., Petenko, I., Viola, A., Mastrantonio, G., Pietroni, I., Casasanta, G., Aristidi, E., and Genthon, C.: The surface layer observed by a high-resolution sodar at DOME C, Antarctica, Ann. Geophys.-Italy, 56, F0557, https://doi.org/10.4401/ag-6347, 2013. 5. Bintanja, R.: Snowdrift suspension and atmospheric turbulence. Part I: Theoretical background and model description, Bound.-Lay. Meteorol., 95, 343–368, 2000.
Cited by
36 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
|
|