Impact of middle-atmospheric composition changes on greenhouse cooling in the upper atmosphere
Author:
Publisher
Elsevier BV
Subject
Space and Planetary Science,Atmospheric Science,Geophysics
Reference43 articles.
1. Simulation of large-scale dynamics in the mesosphere and lower thermosphere with the Doppler-spread parameterization of gravity waves: 1. Implementation and zonal mean climatologies;Akmaev;Journal of Geophysical Research,2001
2. Simulation of large-scale dynamics in the mesosphere and lower thermosphere with the Doppler-spread parameterization of gravity waves: 2. Eddy mixing and the diurnal tide;Akmaev;Journal of Geophysical Research,2001
3. Modeling the cooling due to CO2 increases in the mesosphere and lower thermosphere;Akmaev;Physics and Chemistry of the Earth,2002
4. Thermospheric resistance to “greenhouse cooling”: effect of the collisional excitation rate by atomic oxygen on the thermal response to CO2 forcing;Akmaev;Journal of Geophysical Research,2003
5. Cooling of the mesosphere and lower thermosphere due to doubling of CO2;Akmaev;Annales Geophysicae,1998
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