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Influence of Sea Ice Thickness on the Atmosphere in the Winter Arctic Region in an Atmospheric General Circulation Model

机译:大气环流模式中海冰厚度对冬季北极地区大气的影响

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References(14) Supplementary materials(1) The influence of sea ice thickness on the winter Arctic atmosphere has been investigated using an atmospheric general circulation model, focusing on heat fluxes at the sea ice surface. Due to heat conduction from the sea ice bottom, the sea ice surface temperature increases when the sea ice becomes thin. However, the heat balance among net longwave cooling, sensible and latent heat fluxes, and heat conduction changes with sea ice thickness. When the sea ice is thick, longwave cooling is balanced with the heating of heat conduction and downward sensible heat flux. When the sea ice is sufficiently thin, cooling by sensible and latent heat fluxes plays a large role in heat balance at the sea ice surface, canceling the increase of downward longwave heating associated with cloud change. It is suggested that thinner sea ice leads to warming of a large part of the troposphere in the Arctic region, causing a weakening of upper westerly wind in the sub-arctic region. The magnitude of such a wind response to possible sea ice thickness variability can be 10-20% of interannual variability.
机译:参考文献(14)补充材料(1)使用大气总循环模型研究了海冰厚度对冬季北极大气的影响,重点是海冰表面的热通量。由于来自海冰底部的热传导,当海冰变薄时,海冰表面温度升高。但是,净长波冷却,显热通量和潜热通量以及热传导之间的热平衡会随着海冰厚度的变化而变化。当海冰很厚时,长波冷却与热传导和向下的显热通量平衡。当海冰足够薄时,通过显性和潜热通量进行的冷却在海冰表面的热平衡中起着重要作用,从而抵消了与云层变化有关的向下长波加热的增加。有人认为,较薄的海冰导致北极地区大部分对流层变暖,从而导致亚北极地区上层西风减弱。对可能的海冰厚度变化的这种风响应的大小可以是年际变化的10-20%。

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