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On the subarctic North Atlantic cooling due to global warming

机译:由于全球变暖导致北极北大西洋降温

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摘要

Various ocean reanalysis data reveal that the subarctic Atlantic sea surface temperature (SST) has been cooling during the twentieth century. A similar cooling pattern is found in the doubling CO_ experiment obtained from the CMIP3 (coupled model intercomparison project third phase) compared to the pre-industrial experiment. Here, in order to investigate the main driver of this cooling, we perform the heat budget analysis on the subarctic Atlantic upper ocean temperature. The net surface heat flux associated with the increased concentration of greenhouse gases heats the subarctic ocean surface, In the most of models, the longwave radiation, latent heat flux, and sensible heat flux exert a wanning effect, and the shortwave radiation exerts a cooling effect. On the other hand, the thermal advection by the meridional current reduces the subarctic upper ocean temperature in all models. This cold advection is attributed to the weakening of the meridional overturning circulation, which is related to the reduction in the ocean surface density, hi particular, greater warming of the surface air than of the sea surface results in the reduction of surface evaporation and thereby enhanced freshening of the ocean surface water, while precipitation change was smaller than evaporation change. The thermal advections by both the wind-driven Ekman current and the density-driven geostrophic current contribute to cooling in most of the models, where the heat transport by the geostrophic current tends to be larger than that by the Ekman current.
机译:各种海洋再分析数据表明,在20世纪,北极亚大西洋海表温度(SST)一直在下降。与工业化之前的实验相比,在从CMIP3(耦合模型比对项目第三阶段)获得的CO_翻倍实验中发现了类似的冷却模式。在这里,为了调查这种冷却的主要驱动力,我们对北极亚大西洋上层海洋温度进行了热量收支分析。与温室气体浓度增加相关的净表面热通量加热了北极海洋表面,在大多数模型中,长波辐射,潜热通量和显热通量发挥减弱作用,而短波辐射起冷却作用。 。另一方面,子午流的热平流在所有模型中都降低了北极亚热带上层海洋温度。这种冷平流归因于子午翻转循环的减弱,这与海洋表面密度的降低有关。特别是,与海洋表面相比,地表空气变暖更大,导致表面蒸发减少,从而增强了海洋表层水新鲜化,而降水变化小于蒸发变化。在大多数模型中,由风驱动的埃克曼电流和密度驱动的地转电流产生的热对流有助于冷却,其中地转电流的传热往往大于埃克曼电流的传热。

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  • 来源
    《Theoretical and applied climatology》 |2013年第2期|9-19|共11页
  • 作者

    Hyerim Kim; Soon-Il An;

  • 作者单位

    Department of Atmospheric Sciences, Yonsei University, Seoul 120-749, Korea;

    Department of Atmospheric Sciences, Yonsei University, Seoul 120-749, Korea;

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  • 正文语种 eng
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