Arctic Sea Ice Variations in the First Half of the 20th Century: A New Reconstruction Based on Hydrometeorological Data

IF 6.5 2区 地球科学 Q1 METEOROLOGY & ATMOSPHERIC SCIENCES Advances in Atmospheric Sciences Pub Date : 2024-07-26 DOI:10.1007/s00376-024-3320-x
Vladimir A. Semenov, Tatiana A. Aldonina, Fei Li, Noel Sebastian Keenlyside, Lin Wang
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Abstract

The shrinking Arctic sea-ice area (SIA) in recent decades is a striking manifestation of the ongoing climate change. Variations of the Arctic sea ice have been continuously observed by satellites since 1979, relatively well monitored since the 1950s, but are highly uncertain in the earlier period due to a lack of observations. Several reconstructions of the historical gridded sea-ice concentration (SIC) data were recently presented based on synthesized regional sea-ice observations or by applying a hybrid model–empirical approach. Here, we present an SIC reconstruction for the period 1901–2019 based on established co-variability between SIC and surface air temperature, sea surface temperature, and sea level pressure patterns. The reconstructed sea-ice data for March and September are compared to the frequently used HadISST1.1 and SIBT1850 datasets. Our reconstruction shows a large decrease in SIA from the 1920 to 1940 concurrent with the Early 20th Century Warming event in the Arctic. Such a negative SIA anomaly is absent in HadISST1.1 data. The amplitude of the SIA anomaly reaches about 0.8 mln km2 in March and 1.5 mln km2 in September. The anomaly is about three times stronger than that in the SIBT1850 dataset. The larger decrease in SIA in September is largely due to the stronger SIC reduction in the western sector of the Arctic Ocean in the 70°–80°N latitudinal zone. Our reconstruction provides gridded monthly data that can be used as boundary conditions for atmospheric reanalyses and model experiments to study the Arctic climate for the first half of the 20th century.

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20 世纪上半叶北极海冰的变化:基于水文气象数据的新重构
近几十年来,北极海冰面积(SIA)不断缩小,这是持续气候变化的一个突出表现。自 1979 年以来,卫星对北极海冰的变化进行了持续观测,自 20 世纪 50 年代以来,对北极海冰的监测相对较好,但由于缺乏观测数据,早期北极海冰的变化具有很大的不确定性。最近,根据综合区域海冰观测数据或通过应用模型-经验混合方法,提出了几种重建历史网格海冰浓度(SIC)数据的方法。在此,我们根据海冰浓度与地面气温、海面温度和海平面气压模式之间已确定的共变性,提出了 1901-2019 年期间的海冰浓度重建。我们将重建的 3 月和 9 月海冰数据与常用的 HadISST1.1 和 SIBT1850 数据集进行了比较。我们重建的数据显示,1920 年至 1940 年期间,海冰异常大幅减少,与 20 世纪早期北极变暖事件同时发生。HadISST1.1 数据中不存在这种负的 SIA 异常。SIA 异常的振幅在 3 月份达到约 80 万平方公里,在 9 月份达到 150 万平方公里。其异常强度约为 SIBT1850 数据集的三倍。9 月份 SIA 的降幅较大,主要是由于北纬 70°-80°北冰洋西段的 SIC 降幅较大。我们的重建提供了网格化月度数据,可作为大气再分析和模式实验的边界条件,用于研究 20 世纪上半叶的北极气候。
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来源期刊
Advances in Atmospheric Sciences
Advances in Atmospheric Sciences 地学-气象与大气科学
CiteScore
9.30
自引率
5.20%
发文量
154
审稿时长
6 months
期刊介绍: Advances in Atmospheric Sciences, launched in 1984, aims to rapidly publish original scientific papers on the dynamics, physics and chemistry of the atmosphere and ocean. It covers the latest achievements and developments in the atmospheric sciences, including marine meteorology and meteorology-associated geophysics, as well as the theoretical and practical aspects of these disciplines. Papers on weather systems, numerical weather prediction, climate dynamics and variability, satellite meteorology, remote sensing, air chemistry and the boundary layer, clouds and weather modification, can be found in the journal. Papers describing the application of new mathematics or new instruments are also collected here.
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