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    Ocean Heat Uptake Processes: A Model Intercomparison

    Source: Journal of Climate:;2014:;volume( 028 ):;issue: 002::page 887
    Author:
    Exarchou, Eleftheria
    ,
    Kuhlbrodt, Till
    ,
    Gregory, Jonathan M.
    ,
    Smith, Robin S.
    DOI: 10.1175/JCLI-D-14-00235.1
    Publisher: American Meteorological Society
    Abstract: he quasi-equilibrium heat balances, as well as the responses to 4 ? CO2 perturbation, are compared among three global climate models with the aim to identify and explain intermodel differences in ocean heat uptake (OHU) processes. It is found that, in quasi equilibrium, convective and mixed layer processes, as well as eddy-related processes, cause cooling of the subsurface ocean. The cooling is balanced by warming caused by advective and diapycnally diffusive processes. It is also found that in the CO2-perturbed climates the largest contribution to OHU comes from changes in vertical mixing processes and the mean circulation, particularly in the extratropics, caused both by changes in wind forcing and by changes in high-latitude buoyancy forcing. There is a substantial warming in the tropics: a significant part of which occurs because of changes in horizontal advection in extratropics. Diapycnal diffusion makes only a weak contribution to the OHU, mainly in the tropics, because of increased stratification. There are important qualitative differences in the contribution of eddy-induced advection and isopycnal diffusion to the OHU among the models. The former is related to the different values of the coefficients used in the corresponding scheme. The latter is related to the different tapering formulations of the isopycnal diffusion scheme. These differences affect the OHU in the deep ocean, which is substantial in two of the models, with the dominant region of deep warming being the Southern Ocean. However, most of the OHU takes place above 2000 m, and the three models are quantitatively similar in their global OHU efficiency and its breakdown among processes and as a function of latitude.
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      Ocean Heat Uptake Processes: A Model Intercomparison

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    http://yetl.yabesh.ir/yetl1/handle/yetl/4223440
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    contributor authorExarchou, Eleftheria
    contributor authorKuhlbrodt, Till
    contributor authorGregory, Jonathan M.
    contributor authorSmith, Robin S.
    date accessioned2017-06-09T17:10:22Z
    date available2017-06-09T17:10:22Z
    date copyright2015/01/01
    date issued2014
    identifier issn0894-8755
    identifier otherams-80537.pdf
    identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4223440
    description abstracthe quasi-equilibrium heat balances, as well as the responses to 4 ? CO2 perturbation, are compared among three global climate models with the aim to identify and explain intermodel differences in ocean heat uptake (OHU) processes. It is found that, in quasi equilibrium, convective and mixed layer processes, as well as eddy-related processes, cause cooling of the subsurface ocean. The cooling is balanced by warming caused by advective and diapycnally diffusive processes. It is also found that in the CO2-perturbed climates the largest contribution to OHU comes from changes in vertical mixing processes and the mean circulation, particularly in the extratropics, caused both by changes in wind forcing and by changes in high-latitude buoyancy forcing. There is a substantial warming in the tropics: a significant part of which occurs because of changes in horizontal advection in extratropics. Diapycnal diffusion makes only a weak contribution to the OHU, mainly in the tropics, because of increased stratification. There are important qualitative differences in the contribution of eddy-induced advection and isopycnal diffusion to the OHU among the models. The former is related to the different values of the coefficients used in the corresponding scheme. The latter is related to the different tapering formulations of the isopycnal diffusion scheme. These differences affect the OHU in the deep ocean, which is substantial in two of the models, with the dominant region of deep warming being the Southern Ocean. However, most of the OHU takes place above 2000 m, and the three models are quantitatively similar in their global OHU efficiency and its breakdown among processes and as a function of latitude.
    publisherAmerican Meteorological Society
    titleOcean Heat Uptake Processes: A Model Intercomparison
    typeJournal Paper
    journal volume28
    journal issue2
    journal titleJournal of Climate
    identifier doi10.1175/JCLI-D-14-00235.1
    journal fristpage887
    journal lastpage908
    treeJournal of Climate:;2014:;volume( 028 ):;issue: 002
    contenttypeFulltext
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    DSpace software copyright © 2002-2015  DuraSpace
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