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Anomalies of sea-ice transports in the Arctic

机译:北极海冰运输的异常

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In the Arctic, sea-ice motion and ice export are prominent processes and good indicators of Arctic climate system variability. Sea-ice drift is simulated using a dynamic–thermodynamic sea-ice model, validated with retrievals from SSM/I satellite observations. Both datasets agree well in reproducing the main Arctic drift patterns. In order to study inner Arctic transports and ice volume anomalies, the Arctic Ocean is split by ten boundaries, separating the central Arctic Ocean from the Nordic and marginal seas. It is found that the already dominant sea-ice export through Fram Strait has increased at the expense of export through the Barents Sea in the most recent years investigated. Furthermore, ice export from the Eurasian marginal seas increased slightly, followed by greater ice production during the winter. In contrast to this, the sea-ice volume moved within the Beaufort Gyredistinctly decreased. In total, the ice volume in the central Arctic decreased during the 40 year period covered by this study. The changes in the ice volume correspond to two wind-driven circulation regimes of the Arctic sea-ice motion, which recur approximately every 11 years. For the volume anomalies we derived a correlation of –0.59 to the North Atlantic Oscillation (NAO) index, lagging the NAOby 2 years.
机译:在北极,海冰运动和冰出口是突出的过程和良好的北极气候系统变化指标。使用动态热力学海冰模型模拟海冰漂移,验证了来自SSM / I卫星观测的检索。两个数据集在再现主要北极漂移模式时都很顺为吻合。为了研究内部北极传输和冰量的异常,北极海洋分裂了十个边界,将中心北极海洋与北欧和边缘海洋分开。结果发现,在最近几年的调查中,通过FRAM海峡已经通过粉碎海峡的牺牲品增加了。此外,欧亚边缘海的冰出口略有增加,随后在冬季冰冰。与此相反,海冰体积在博览会上移动了狼人的变化。总共,在本研究涵盖的40年期间,北极地区的冰量下降。冰量的变化对应于北极海冰运动的两个风力驱动循环制度,大约每11年重复。对于体积异常,我们从北大西洋振荡(NAO)指数中源于-0.59的相关性,滞后了2年。

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