Impact of atmospheric rivers on Arctic sea ice variations

Ling-li Li, F. Cannon, M. Mazloff, A. Subramanian, Anna M. Wilson, F. Ralph
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引用次数: 2

Abstract

Abstract. Arctic sea ice has been declining rapidly in recent decades. We investigate how the poleward transport of moisture and heat from lower latitudes through atmospheric rivers (ARs) influences Arctic sea ice variations. We use hourly ERA5 (fifth-generation European Reanalysis) data for 1981–2020 at 0.25∘ × 0.25∘ resolution to examine the meteorological conditions and sea ice changes associated with ARs in the Arctic. In the years 2012 and 2020, which had an extremely low summer Arctic sea ice extent, we show that the individual AR events associated with large cyclones initiate a rapid sea ice decrease through turbulent heat fluxes and winds. We carry out further statistical analysis of the meteorological conditions and sea ice variations for 1981–2020 over the entire Arctic Ocean. We find that on weather timescales the atmospheric moisture content anticorrelates significantly with the sea ice concentration tendency almost everywhere in the Arctic Ocean, while the dynamic sea ice motion driven by northward winds further reduces the sea ice concentration.
大气河流对北极海冰变化的影响
摘要近几十年来,北极海冰迅速减少。我们研究了通过大气河流(ARs)从低纬度向极地输送水分和热量如何影响北极海冰的变化。我们使用分辨率为0.25∘ × 0.25∘的1981-2020年每小时ERA5(第五代欧洲再分析)数据,研究了北极地区与ARs相关的气象条件和海冰变化。在夏季北极海冰范围极低的 2012 年和 2020 年,我们发现与大型气旋相关的单个 AR 事件通过湍流热通量和风引发了海冰的快速减少。我们对 1981-2020 年整个北冰洋的气象条件和海冰变化进行了进一步的统计分析。我们发现,在气象时间尺度上,北冰洋几乎所有地方的大气含水量都与海冰浓度趋势显著反相关,而北风驱动的海冰动态运动则进一步降低了海冰浓度。
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