A method for estimating global subgrid-scale gravity-wave temperature perturbations in chemistry-climate models

Author:

Weimer Michael1ORCID,Wilka Catherine1ORCID,Kinnison Douglas Edward2ORCID,Garcia Rolando R.3ORCID,Bacmeister Julio T.4ORCID,Alexander M. Joan5ORCID,Dörnbrack Andreas6ORCID,Solomon Susan7ORCID

Affiliation:

1. Massachusetts Institute of Technology

2. NCAR/CLAS

3. National Center for Atmospheric Research (NCAR)

4. National Center for Atmospheric Research (UCAR)

5. NorthWest Research Associates, CoRA Office

6. DLR, Institut für Physik der Atmosphäre

7. MIT

Funder

National Science Foundation

National Aeronautics and Space Administration

Publisher

Wiley

Reference76 articles.

1. Global and seasonal variations in three-dimensional gravity wave momentum flux from satellite limb-sounding temperatures;Alexander M. J.;Geophysical Research Letters,2015

2. Gravity wave and orographic wave activity observed around the Antarctic and Arctic stratospheric vortices by the COSMIC GPS-RO satellite constellation;Alexander S. P.;Journal of Geophysical Research: Atmospheres, 114 (D17). doi,2009

3. The COSMIC/FORMOSAT-3 Mission;Anthes R. A.;Early Results. Bulletin of the American Meteorological Society,2008

4. An Algorithm for Forecasting Mountain Wave-Related Turbulence in the Stratosphere;Bacmeister J. T.;Weather and Forecasting,1994

5. Burkholder J. B. Sander S. P. Abbatt J. P. D. Barker J. R. Huie R. E. Kolb C. E. . . . Wine P. H. (2015). Chemical Kinetics and Photochemical Data for Use in Atmospheric Studies: Evaluation Number 18 (Tech. Rep.). Pasadena: Jet Propulsion Laboratory.

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