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The Relationship between Age of Air and the Diabatic Circulation of the Stratosphere

Author(s)
Gerber, Edwin P.; Sheshadri, Aditi; Linz, Marianna Katherine; Plumb, Raymond Alan
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Article is made available in accordance with the publisher's policy and may be subject to US copyright law. Please refer to the publisher's site for terms of use.
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Abstract
The strength of the Brewer–Dobson circulation is difficult to estimate using observations. Trends in the age of stratospheric air, deduced from observations of transient tracers, have been used to identify trends in the circulation, but there are ambiguities in the relationship between age and the strength of the circulation. This paper presents a steady-state theory and a time-dependent extension to relate age of air directly to the diabatic circulation of the stratosphere. In steady state, it is the difference between the age of upwelling and downwelling air through an isentrope and not the absolute value of age that is a measure of the strength of the diabatic circulation through that isentrope. For the time-varying case, expressions for other terms that contribute to the age budget are derived. An idealized atmospheric general circulation model with and without a seasonal cycle is used to test the time-dependent theory and to find that these additional terms are small upon annual averaging. The steady-state theory holds as well for annual averages of a seasonally varying model as for a perpetual-solstice model. These results are a step toward using data to quantify the strength of the diabatic circulation.
Date issued
2016-10
URI
http://hdl.handle.net/1721.1/109919
Department
Massachusetts Institute of Technology. Department of Earth, Atmospheric, and Planetary Sciences; Woods Hole Oceanographic Institution
Journal
Journal of the Atmospheric Sciences
Publisher
American Meteorological Society
Citation
Linz, Marianna; Plumb, R. Alan; Gerber, Edwin P. and Sheshadri, Aditi. “The Relationship Between Age of Air and the Diabatic Circulation of the Stratosphere.” Journal of the Atmospheric Sciences 73, no. 11 (November 2016): 4507–4518 © 2016 American Meteorological Society
Version: Final published version
ISSN
0022-4928
1520-0469

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