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过去260万年瞬变耦合全球气候模式模拟中的北半球海冰变化

Northern Hemisphere sea ice variability in a transient CGCM simulation of the past 2.6 Ma.

作者信息

Mandal Gagan, An Soon-Il, Park Jae-Heung, Yun Kyung-Sook, Liu Chao, Paik Seungmok

机构信息

Irreversible Climate Change Research Center, Yonsei University, Seoul, Republic of Korea.

Department of Atmospheric Sciences, Yonsei University, Seoul, Republic of Korea.

出版信息

Nat Commun. 2025 Jan 2;16(1):39. doi: 10.1038/s41467-024-55327-2.

Abstract

The recent sea ice changes in the Northern Hemisphere (NH), necessitate elucidating the sea ice variability over the past 2.6 million years (Ma), when the Earth's glacial cycles transitioned from ∼41 to ∼100 kyr periodicity, following the Mid-Pleistocene Transition (MPT) period (0.7-1.2 Ma). Here, we analyze a coupled general circulation model (CGCM) simulation to understand how the NH sea ice responds to changes in the transient orbital, greenhouse gas (GHG), and ice-sheet forcings. We find that the Earth's axial tilt (obliquity) and axial wobble (precession) strongly influence the variability in high-latitude (>70° N) perennial sea ice and mid-latitude (35° N-70° N) seasonal sea ice, respectively, by modifying the net surface shortwave radiation. Meanwhile, the GHG forcing affects the glacial-interglacial sea ice predominantly in the Labrador Sea, Irminger-Iceland basin sector, and Central North Pacific regions during the MPT and post-MPT (0.0-0.7 Ma) periods by modulating the downwelling longwave radiation. Additionally, we confirm that variability with longer periodicity (∼100 kyr) from GHG and ice-sheet forcings is most pronounced in NH sea ice during the MPT and post-MPT periods.

摘要

北半球近期的海冰变化,使得有必要阐明过去260万年期间的海冰变率,在此期间,自中更新世过渡(MPT,0.7 - 1.2百万年前)之后,地球的冰川周期从约41 kyr转变为约100 kyr的周期。在这里,我们分析了一个耦合的大气环流模型(CGCM)模拟,以了解北半球海冰如何响应瞬态轨道、温室气体(GHG)和冰盖强迫的变化。我们发现,地球的轴倾斜(倾角)和轴向摆动(岁差)分别通过改变净表面短波辐射,强烈影响高纬度(>70°N)常年海冰和中纬度(35°N - 70°N)季节性海冰的变率。同时,在MPT和MPT之后(0.0 - 0.7百万年前)的时期,GHG强迫通过调节向下的长波辐射,主要影响拉布拉多海、伊尔明厄-冰岛海盆区域和北太平洋中部地区的冰期-间冰期海冰。此外,我们证实,在MPT和MPT之后的时期,GHG和冰盖强迫导致的较长周期(约100 kyr)的变率在北半球海冰中最为明显。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/63a2/11695940/3fb52be2af7c/41467_2024_55327_Fig1_HTML.jpg

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