Reply to “Comments on ‘Indications of Stratified Turbulence in a Mechanistic GCM’”
Author:
Affiliation:
1. Leibniz-Institute of Atmospheric Physics, University of Rostock, Kühlungsborn, Germany
2. Institute of Oceanography, University of Hamburg, Hamburg, Germany
Publisher
American Meteorological Society
Subject
Atmospheric Science
Link
http://journals.ametsoc.org/jas/article-pdf/71/2/858/3645363/jas-d-13-0281_1.pdf
Reference19 articles.
1. The primary nonlinear dynamics of modal and nonmodal perturbations of monochromatic inertia–gravity waves;Achatz;J. Atmos. Sci.,2007
2. On the energetics of mean-flow interactions with thermally dissipating gravity waves;Akmaev;J. Geophys. Res.,2007
3. A new formulation of the spectral energy budget of the atmosphere, with application to two high-resolution general circulation models;Augier;J. Atmos. Sci.,2013
4. Sensitivity of the upper mesosphere to the Lorenz energy cycle of the troposphere;Becker;J. Atmos. Sci.,2009
5. Consistent scale interaction of gravity waves in the Doppler spread parameterization;Becker;J. Atmos. Sci.,2009
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1. A Dynamic Mixed Model for General Circulation Models;Meteorologische Zeitschrift;2023-01-01
2. A High‐Resolution Whole‐Atmosphere Model With Resolved Gravity Waves and Specified Large‐Scale Dynamics in the Troposphere and Stratosphere;Journal of Geophysical Research: Atmospheres;2022-01-20
3. Scale-Invariant Formulation of Momentum Diffusion for High-Resolution Atmospheric Circulation Models;Monthly Weather Review;2018-04
4. Secondary Gravity Waves in the Winter Mesosphere: Results From a High‐Resolution Global Circulation Model;Journal of Geophysical Research: Atmospheres;2018-03-10
5. Frequency spectra and vertical profiles of wind fluctuations in the summer Antarctic mesosphere revealed by MST radar observations;Journal of Geophysical Research: Atmospheres;2017-01-03
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