Stratospheric Wave–Mean Flow Feedbacks and Sudden Stratospheric Warmings in a Simple Model Forced by Upward Wave Activity FluxSource: Journal of the Atmospheric Sciences:;2014:;Volume( 071 ):;issue: 011::page 4055DOI: 10.1175/JAS-D-14-0113.1Publisher: American Meteorological Society
Abstract: classic result of studying stratospheric wave?mean flow interactions presented by Holton and Mass is that, for constant incoming wave forcing (at a notional tropopause), a vacillating stratospheric response may ensue. Simple models, such as the Holton?Mass model, typically prescribe the incoming wave forcing in terms of geopotential perturbation, which is not a proxy for upward wave activity flux. Here, the authors reformulate the Holton?Mass model such that incoming upward wave activity flux is prescribed. The Holton?Mass model contains a positive wave?mean flow feedback whereby wave forcing decelerates the mean flow, allowing enhanced wave propagation, which then further decelerates the mean flow, etc., until the mean flow no longer supports wave propagation. By specifying incoming wave activity flux, this feedback is constrained to the model interior. Bistability?where the zonal wind may exist at one of two distinct steady states for a given incoming wave forcing?is maintained in this reformulated model. The model is perturbed with transient pulses of upward wave activity flux to produce transitions between the two stable states. A minimum of integrated incoming wave activity flux necessary to force these sudden stratospheric warming?like transitions exists for pulses with time scales on the order of 10 days, arising from a wave time scale internal to the model at which forcing produces the strongest mean-flow response. The authors examine how the tropopause affects the internal feedback for this model setup and find that the tropopause inversion layer may potentially provide an important source of wave activity in the lower stratosphere.
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contributor author | Sjoberg, Jeremiah P. | |
contributor author | Birner, Thomas | |
date accessioned | 2017-06-09T16:57:37Z | |
date available | 2017-06-09T16:57:37Z | |
date copyright | 2014/11/01 | |
date issued | 2014 | |
identifier issn | 0022-4928 | |
identifier other | ams-77082.pdf | |
identifier uri | http://onlinelibrary.yabesh.ir/handle/yetl/4219601 | |
description abstract | classic result of studying stratospheric wave?mean flow interactions presented by Holton and Mass is that, for constant incoming wave forcing (at a notional tropopause), a vacillating stratospheric response may ensue. Simple models, such as the Holton?Mass model, typically prescribe the incoming wave forcing in terms of geopotential perturbation, which is not a proxy for upward wave activity flux. Here, the authors reformulate the Holton?Mass model such that incoming upward wave activity flux is prescribed. The Holton?Mass model contains a positive wave?mean flow feedback whereby wave forcing decelerates the mean flow, allowing enhanced wave propagation, which then further decelerates the mean flow, etc., until the mean flow no longer supports wave propagation. By specifying incoming wave activity flux, this feedback is constrained to the model interior. Bistability?where the zonal wind may exist at one of two distinct steady states for a given incoming wave forcing?is maintained in this reformulated model. The model is perturbed with transient pulses of upward wave activity flux to produce transitions between the two stable states. A minimum of integrated incoming wave activity flux necessary to force these sudden stratospheric warming?like transitions exists for pulses with time scales on the order of 10 days, arising from a wave time scale internal to the model at which forcing produces the strongest mean-flow response. The authors examine how the tropopause affects the internal feedback for this model setup and find that the tropopause inversion layer may potentially provide an important source of wave activity in the lower stratosphere. | |
publisher | American Meteorological Society | |
title | Stratospheric Wave–Mean Flow Feedbacks and Sudden Stratospheric Warmings in a Simple Model Forced by Upward Wave Activity Flux | |
type | Journal Paper | |
journal volume | 71 | |
journal issue | 11 | |
journal title | Journal of the Atmospheric Sciences | |
identifier doi | 10.1175/JAS-D-14-0113.1 | |
journal fristpage | 4055 | |
journal lastpage | 4071 | |
tree | Journal of the Atmospheric Sciences:;2014:;Volume( 071 ):;issue: 011 | |
contenttype | Fulltext |