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首页> 外文期刊>Journal of Climate >Decadal-Mean Impact of Including Ocean Surface Currents in Bulk Formulas on Surface Air-Sea Fluxes and Ocean General Circulation
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Decadal-Mean Impact of Including Ocean Surface Currents in Bulk Formulas on Surface Air-Sea Fluxes and Ocean General Circulation

机译:散装公式在地表空腹助势和海洋通用循环中的海洋表面电流包括海洋表面电流的二道均值影响

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摘要

The decadal-mean impact of including ocean surface currents in the bulk formulas on surface air-sea fluxes and the ocean general circulation is investigated for the first time using a global eddy-permitting coupled ocean-sea ice model. Although including ocean surface currents in air-sea flux calculations only weakens the surface wind stress by a few percent, it significantly reduces wind power input to both geostrophic and ageostrophic motions, and damps the eddy and mean kinetic energy throughout the water column. Furthermore, the strength of the horizontal gyre circulations and the Atlantic meridional overturning circulation are found to decrease considerably (by 10%-15% and; 13%, respectively). As a result of the weakened ocean general circulation, the maximum northward global ocean heat transport decreases by about 0.2 PW, resulting in a lower sea surface temperature and reduced surface heat loss in the northern North Atlantic. Additional sensitivity model experiments further demonstrate that it is including ocean surface currents in the wind stress calculation that dominates this decadal impact, with including ocean surface currents in the turbulent heat flux calculations making only a minor contribution. These results highlight the importance of properly accounting for ocean surface currents in surface air-sea fluxes in modeling the ocean circulation and climate.
机译:在地表空腹助焊剂和海洋一般循环中散装公式中包括海洋表面电流的二道均值的影响是使用全球涡流允许的海洋海冰模型进行研究。虽然在空中海洋助焊剂计算中包括海洋表面电流,但仅削弱了几个百分点,但它显着降低了出色的风电输入,并抑制了整个水柱的涡流和平均动能。此外,发现水平圆形循环的强度和大西洋经络倾覆循环分别降低(分别为10%-15%和; 13%)。由于海洋一般循环疲软,最大北方全球海洋热传输减少约0.2磅,导致北部大西洋北部的海面温度和降低表面热量损失。额外的灵敏度模型实验进一步证明它包括在风力计算中的海面电流,其主导了这种二等抗冲击,包括湍流热通量计算中的海洋表面电流,仅贡献。这些结果突出了在建模海洋循环和气候中妥善核算海洋表面电流的重要性。

著录项

  • 来源
    《Journal of Climate》 |2017年第23期|共15页
  • 作者单位

    Hohai Univ Coll Oceanog Nanjing Jiangsu Peoples R China;

    Univ East Anglia Sch Environm Sci Ctr Ocean &

    Atmospher Sci Norwich Norfolk England;

    Hohai Univ Coll Oceanog Nanjing Jiangsu Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 气候学;
  • 关键词

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