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    Potential Vorticity Dynamics of Boundary Currents in a Quasi-geostrophic Ocean

    Source: Journal of Physical Oceanography:;1989:;Volume( 019 ):;issue: 009::page 1373
    Author:
    Lozier, M. Susan
    ,
    Riser, Stephen C.
    DOI: 10.1175/1520-0485(1989)019<1373:PVDOBC>2.0.CO;2
    Publisher: American Meteorological Society
    Abstract: Boundary layer potential vorticity dynamics for a quasi-geostrophic, eddy-resolving general circulation ocean model are studied using both Lagrangian and Eulerian analyses. Active western boundary layers are found not only in the upper wind-driven layer but also in the lower layers, despite the lack of a direct vorticity input to the deep ocean. At the western wall dissipative and inertial boundary regimes are exclusively controlled by the time-mean dynamics except for the deepest layer where eddy fluxes drive the mean flow across mean potential vorticity contours. Boundary layers formed at the southern wall in this model are dynamically distinct from the western boundary layers; they are controlled solely by the eddy flux of potential vorticity found in this region of active baroclinic instability. Basin-integrated vorticity balances reveal a strong contribution to the vorticity cycle by the lateral boundaries with such input overshadowed by the vorticity exchange across the midbasin gyre boundary in the surface layer.
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      Potential Vorticity Dynamics of Boundary Currents in a Quasi-geostrophic Ocean

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    http://yetl.yabesh.ir/yetl1/handle/yetl/4164570
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    contributor authorLozier, M. Susan
    contributor authorRiser, Stephen C.
    date accessioned2017-06-09T14:49:21Z
    date available2017-06-09T14:49:21Z
    date copyright1989/09/01
    date issued1989
    identifier issn0022-3670
    identifier otherams-27552.pdf
    identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4164570
    description abstractBoundary layer potential vorticity dynamics for a quasi-geostrophic, eddy-resolving general circulation ocean model are studied using both Lagrangian and Eulerian analyses. Active western boundary layers are found not only in the upper wind-driven layer but also in the lower layers, despite the lack of a direct vorticity input to the deep ocean. At the western wall dissipative and inertial boundary regimes are exclusively controlled by the time-mean dynamics except for the deepest layer where eddy fluxes drive the mean flow across mean potential vorticity contours. Boundary layers formed at the southern wall in this model are dynamically distinct from the western boundary layers; they are controlled solely by the eddy flux of potential vorticity found in this region of active baroclinic instability. Basin-integrated vorticity balances reveal a strong contribution to the vorticity cycle by the lateral boundaries with such input overshadowed by the vorticity exchange across the midbasin gyre boundary in the surface layer.
    publisherAmerican Meteorological Society
    titlePotential Vorticity Dynamics of Boundary Currents in a Quasi-geostrophic Ocean
    typeJournal Paper
    journal volume19
    journal issue9
    journal titleJournal of Physical Oceanography
    identifier doi10.1175/1520-0485(1989)019<1373:PVDOBC>2.0.CO;2
    journal fristpage1373
    journal lastpage1396
    treeJournal of Physical Oceanography:;1989:;Volume( 019 ):;issue: 009
    contenttypeFulltext
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    DSpace software copyright © 2002-2015  DuraSpace
    نرم افزار کتابخانه دیجیتال "دی اسپیس" فارسی شده توسط یابش برای کتابخانه های ایرانی | تماس با یابش
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