Toward the Dynamical Convergence on the Jet Stream in Aquaplanet AGCMsSource: Journal of Climate:;2015:;volume( 028 ):;issue: 017::page 6763Author:Lu, Jian
,
Chen, Gang
,
Leung, L. Ruby
,
Burrows, D. Alex
,
Yang, Qing
,
Sakaguchi, Koichi
,
Hagos, Samson
DOI: 10.1175/JCLI-D-14-00761.1Publisher: American Meteorological Society
Abstract: ystematic sensitivity of the jet position and intensity to horizontal model resolution is identified in several aquaplanet AGCMs, with the coarser resolution producing a more equatorward eddy-driven jet and a stronger upper-tropospheric jet intensity. As the resolution of the models increases to 50 km or finer, the jet position and intensity show signs of convergence within each model group. The mechanism for this convergence behavior is investigated using a hybrid Eulerian?Lagrangian finite-amplitude wave activity budget developed for the upper-tropospheric absolute vorticity. The results suggest that the poleward shift of the eddy-driven jet with higher resolution can be attributed to the smaller effective diffusivity of the model in the midlatitudes that allows more wave activity to survive the dissipation and to reach the subtropical critical latitude for wave breaking. The enhanced subtropical wave breaking and associated irreversible vorticity mixing act to maintain a more poleward peak of the vorticity gradient, and thus a more poleward jet. Being overdissipative, the coarse-resolution AGCMs misrepresent the nuanced nonlinear aspect of the midlatitude eddy?mean flow interaction, giving rise to the equatorward bias of the eddy-driven jet. In accordance with the asymptotic behavior of effective diffusivity of Batchelor turbulence in the large Peclet number limit, the upper-tropospheric effective diffusivity of the aquaplanet AGCMs displays signs of convergence in the midlatitude toward a value of approximately 107 m2 s?1 for the ?2 diffusion. This provides a dynamical underpinning for the convergence of the jet stream observed in these AGCMs at high resolution.
|
Collections
Show full item record
contributor author | Lu, Jian | |
contributor author | Chen, Gang | |
contributor author | Leung, L. Ruby | |
contributor author | Burrows, D. Alex | |
contributor author | Yang, Qing | |
contributor author | Sakaguchi, Koichi | |
contributor author | Hagos, Samson | |
date accessioned | 2017-06-09T17:11:41Z | |
date available | 2017-06-09T17:11:41Z | |
date copyright | 2015/09/01 | |
date issued | 2015 | |
identifier issn | 0894-8755 | |
identifier other | ams-80895.pdf | |
identifier uri | http://onlinelibrary.yabesh.ir/handle/yetl/4223837 | |
description abstract | ystematic sensitivity of the jet position and intensity to horizontal model resolution is identified in several aquaplanet AGCMs, with the coarser resolution producing a more equatorward eddy-driven jet and a stronger upper-tropospheric jet intensity. As the resolution of the models increases to 50 km or finer, the jet position and intensity show signs of convergence within each model group. The mechanism for this convergence behavior is investigated using a hybrid Eulerian?Lagrangian finite-amplitude wave activity budget developed for the upper-tropospheric absolute vorticity. The results suggest that the poleward shift of the eddy-driven jet with higher resolution can be attributed to the smaller effective diffusivity of the model in the midlatitudes that allows more wave activity to survive the dissipation and to reach the subtropical critical latitude for wave breaking. The enhanced subtropical wave breaking and associated irreversible vorticity mixing act to maintain a more poleward peak of the vorticity gradient, and thus a more poleward jet. Being overdissipative, the coarse-resolution AGCMs misrepresent the nuanced nonlinear aspect of the midlatitude eddy?mean flow interaction, giving rise to the equatorward bias of the eddy-driven jet. In accordance with the asymptotic behavior of effective diffusivity of Batchelor turbulence in the large Peclet number limit, the upper-tropospheric effective diffusivity of the aquaplanet AGCMs displays signs of convergence in the midlatitude toward a value of approximately 107 m2 s?1 for the ?2 diffusion. This provides a dynamical underpinning for the convergence of the jet stream observed in these AGCMs at high resolution. | |
publisher | American Meteorological Society | |
title | Toward the Dynamical Convergence on the Jet Stream in Aquaplanet AGCMs | |
type | Journal Paper | |
journal volume | 28 | |
journal issue | 17 | |
journal title | Journal of Climate | |
identifier doi | 10.1175/JCLI-D-14-00761.1 | |
journal fristpage | 6763 | |
journal lastpage | 6782 | |
tree | Journal of Climate:;2015:;volume( 028 ):;issue: 017 | |
contenttype | Fulltext |