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contributor authorSigmond, Michael
contributor authorShepherd, Theodore G.
date accessioned2017-06-09T17:09:35Z
date available2017-06-09T17:09:35Z
date copyright2014/07/01
date issued2014
identifier issn0894-8755
identifier otherams-80311.pdf
identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4223189
description abstractollowing recent findings, the interaction between resolved (Rossby) wave drag and parameterized orographic gravity wave drag (OGWD) is investigated, in terms of their driving of the Brewer?Dobson circulation (BDC), in a comprehensive climate model. To this end, the parameter that effectively determines the strength of OGWD in present-day and doubled CO2 simulations is varied. The authors focus on the Northern Hemisphere during winter when the largest response of the BDC to climate change is predicted to occur. It is found that increases in OGWD are to a remarkable degree compensated by a reduction in midlatitude resolved wave drag, thereby reducing the impact of changes in OGWD on the BDC. This compensation is also found for the response to climate change: changes in the OGWD contribution to the BDC response to climate change are compensated by opposite changes in the resolved wave drag contribution to the BDC response to climate change, thereby reducing the impact of changes in OGWD on the BDC response to climate change. By contrast, compensation does not occur at northern high latitudes, where resolved wave driving and the associated downwelling increase with increasing OGWD, both for the present-day climate and the response to climate change. These findings raise confidence in the credibility of climate model projections of the strengthened BDC.
publisherAmerican Meteorological Society
titleCompensation between Resolved Wave Driving and Parameterized Orographic Gravity Wave Driving of the Brewer–Dobson Circulation and Its Response to Climate Change
typeJournal Paper
journal volume27
journal issue14
journal titleJournal of Climate
identifier doi10.1175/JCLI-D-13-00644.1
journal fristpage5601
journal lastpage5610
treeJournal of Climate:;2014:;volume( 027 ):;issue: 014
contenttypeFulltext


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