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    Monthly Mean Wind Stress and Sverdrup Transports in the North Atlantic: A Comparison of the Hellerman–Rosenstein and Isemer–Hasse Climatologies

    Source: Journal of Physical Oceanography:;1991:;Volume( 021 ):;issue: 002::page 221
    Author:
    Böning, Claus W.
    ,
    Döscher, Ralf
    ,
    Isemer, Hans-Jörg
    DOI: 10.1175/1520-0485(1991)021<0221:MMWSAS>2.0.CO;2
    Publisher: American Meteorological Society
    Abstract: The monthly mean wind stress climatology of Hellerman and Rosenstein (HR) is compared with the climatology of Isemer and Hasse (IH), which represents a version of the Bunker atlas (BU) for the North Atlantic based on revised parameterizations. The drag coefficients adopted by IH are 21% smaller than the values of BU and HR, and the calculation of wind speed from marine estimates of Beaufort force (Bft) is based on a revised Beaufort equivalent scale similar to the scientific scale recommended by WMO. The latter choice significantly increases wind speed below Bft 8, and effectively counteracts the reduction of the drag coefficients. Comparing the IH stresses with HR reveals substantially enhanced magnitudes in the trade wind region throughout the year. At 15°N the mean easterly stress increases from about 0.9 (HR) to about 1.2 dyn cm?1 (IH). Annual mean differences are smaller in the region of the westerlies. In winter, the effect due to the reduced drag coefficient dominates and leads to smaller stress values in IH; during summer season the revision of the Beaufort equivalents is more effective and leads to increased stresses. Implications of the different wind stress climatologies for forcing the large-scale ocean circulation are discussed by means of the Sverdrup transport streamfunction (?s): Throughout the subtropical gyre a significant intensification of ?s takes place with IH. At 27°N, differences of more than 10 Sv (1 Sv ≡ 106 m3 s?1) are found near the western boundary. Differences in the seasonality of ?s are more pronounced in near-equatorial regions where IH increase the amplitude of the annual cycle by about 50%. An eddy-resolving model of the North Atlantic circulation is used to examine the effect of the different wind stresses on the seasonal cycle of the Florida Current. The transport predicted by the numerical model is in much better agreement with observations when the circulation is forced by IH than by HR, regarding both the annual mean (29.1 Sv vs 23.2 Sv) and the seasonal range (6.3 Sv vs 3.4 Sv).
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      Monthly Mean Wind Stress and Sverdrup Transports in the North Atlantic: A Comparison of the Hellerman–Rosenstein and Isemer–Hasse Climatologies

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    http://yetl.yabesh.ir/yetl1/handle/yetl/4164777
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    contributor authorBöning, Claus W.
    contributor authorDöscher, Ralf
    contributor authorIsemer, Hans-Jörg
    date accessioned2017-06-09T14:49:53Z
    date available2017-06-09T14:49:53Z
    date copyright1991/02/01
    date issued1991
    identifier issn0022-3670
    identifier otherams-27739.pdf
    identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4164777
    description abstractThe monthly mean wind stress climatology of Hellerman and Rosenstein (HR) is compared with the climatology of Isemer and Hasse (IH), which represents a version of the Bunker atlas (BU) for the North Atlantic based on revised parameterizations. The drag coefficients adopted by IH are 21% smaller than the values of BU and HR, and the calculation of wind speed from marine estimates of Beaufort force (Bft) is based on a revised Beaufort equivalent scale similar to the scientific scale recommended by WMO. The latter choice significantly increases wind speed below Bft 8, and effectively counteracts the reduction of the drag coefficients. Comparing the IH stresses with HR reveals substantially enhanced magnitudes in the trade wind region throughout the year. At 15°N the mean easterly stress increases from about 0.9 (HR) to about 1.2 dyn cm?1 (IH). Annual mean differences are smaller in the region of the westerlies. In winter, the effect due to the reduced drag coefficient dominates and leads to smaller stress values in IH; during summer season the revision of the Beaufort equivalents is more effective and leads to increased stresses. Implications of the different wind stress climatologies for forcing the large-scale ocean circulation are discussed by means of the Sverdrup transport streamfunction (?s): Throughout the subtropical gyre a significant intensification of ?s takes place with IH. At 27°N, differences of more than 10 Sv (1 Sv ≡ 106 m3 s?1) are found near the western boundary. Differences in the seasonality of ?s are more pronounced in near-equatorial regions where IH increase the amplitude of the annual cycle by about 50%. An eddy-resolving model of the North Atlantic circulation is used to examine the effect of the different wind stresses on the seasonal cycle of the Florida Current. The transport predicted by the numerical model is in much better agreement with observations when the circulation is forced by IH than by HR, regarding both the annual mean (29.1 Sv vs 23.2 Sv) and the seasonal range (6.3 Sv vs 3.4 Sv).
    publisherAmerican Meteorological Society
    titleMonthly Mean Wind Stress and Sverdrup Transports in the North Atlantic: A Comparison of the Hellerman–Rosenstein and Isemer–Hasse Climatologies
    typeJournal Paper
    journal volume21
    journal issue2
    journal titleJournal of Physical Oceanography
    identifier doi10.1175/1520-0485(1991)021<0221:MMWSAS>2.0.CO;2
    journal fristpage221
    journal lastpage235
    treeJournal of Physical Oceanography:;1991:;Volume( 021 ):;issue: 002
    contenttypeFulltext
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