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Vertical Feedback Mechanism of Winter Arctic Amplification and Sea Ice Loss

机译:冬季北极放大和海冰损失的垂直反馈机制

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Sea ice reduction is accelerating in the Barents and Kara Seas. Several mechanisms are proposed to explain the accelerated loss of Arctic sea ice, which remains to be controversial. In the present study, detailed physical mechanism of sea ice reduction in winter (December–February) is identified from the daily ERA interim reanalysis data. Downward longwave radiation is an essential element for sea ice reduction, but can primarily be sustained by excessive upward heat flux from the sea surface exposed to air in the region of sea ice loss. The increased turbulent heat flux is used to increase air temperature and specific humidity in the lower troposphere, which in turn increases downward longwave radiation. This feedback process is clearly observed in the Barents and Kara Seas in the reanalysis data. A quantitative assessment reveals that this feedback process is being amplified at the rate of ~8.9% every year during 1979–2016. Availability of excessive heat flux is necessary for the maintenance of this feedback process; a similar mechanism of sea ice loss is expected to take place over the sea-ice covered polar region, when sea ice is not fully recovered in winter.
机译:海冰还原在巴伦和卡拉海洋中加速。提出了几种机制来解释北极海冰的加速丧失,这仍有争议。在本研究中,从每日时代的临时再分析数据中鉴定了冬季(12月至2月)的海冰减少的详细物理机制。向下的长波辐射是海冰减少的一个基本要素,但可以通过海面暴露在海冰地区暴露于空气的海面过度向上的热量通量来维持。增加的湍流热通量用于增加较低对流层中的空气温度和特定湿度,这又增加了长波辐射。在重新分析数据中,在巴伦和卡拉海洋中清楚地观察到该反馈过程。定量评估表明,在1979 - 2016年期间,每年的速率为〜8.9%的速率被扩增。过热通量的可用性对于维护该反馈过程是必要的;当海冰在冬季没有完全恢复时,预计海冰​​覆盖的极地区域的类似机制将持续。

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