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Solar signal propagation: The role of gravity waves and stratospheric sudden warmings

Abstract:
We use a troposphere-stratosphere model of intermediate complexity to study the atmospheric response to an idealized solar forcing in the subtropical upper stratosphere during Northern Hemisphere (NH) early winter. We investigate two conditions that could influence poleward and downward propagation of the response: (1) the representation of gravity wave effects and (2) the presence/absence of stratospheric sudden warmings (SSWs). We also investigate how the perturbation influences the timing and frequency of SSWs. Differences in the poleward and downward propagation of the response within the stratosphere are found depending on whether Rayleigh friction (RF) or a gravity wave scheme (GWS) is used to represent gravity wave effects. These differences are likely related to differences in planetary wave activity in the GWS and RF versions, as planetary wave redistribution plays an important role in the downward and poleward propagation of stratospheric signals. There is also remarkable sensitivity in the tropospheric response to the representation of the gravity wave effects. It is most realistic for GWS. Further, tropospheric responses are systematically different dependent on the absence/presence of SSWs. When only years with SSWs are examined, the tropospheric signal appears to have descended from the stratosphere, while the signal in the troposphere appears disconnected from the stratosphere when years with SSWs are excluded. Different troposphere-stratosphere coupling mechanisms therefore appear to be dominant for years with and without SSWs. The forcing does not affect the timing of SSWs, but does result in a higher occurrence frequency throughout NH winter. Quasi-Biennial Oscillation effects were not included. Copyright 2011 by the American Geophysical Union.
Publication status:
Published

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Publisher copy:
10.1029/2010JD014535

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Journal:
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES More from this journal
Volume:
116
Issue:
2
Publication date:
2011-01-27
DOI:
ISSN:
2169-897X


Language:
English
Pubs id:
pubs:324912
UUID:
uuid:056d9dd0-ed7f-4510-8d2f-39b195ff4284
Local pid:
pubs:324912
Source identifiers:
324912
Deposit date:
2012-12-19

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