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固体地球变化与南极冰盖的演化。

Solid Earth change and the evolution of the Antarctic Ice Sheet.

机构信息

Department of Geography, Durham University, Durham, UK, DH1 3LE.

Department of Earth and Planetary Sciences, McGill University, Montreal, H3A 0E8, Canada.

出版信息

Nat Commun. 2019 Jan 30;10(1):503. doi: 10.1038/s41467-018-08068-y.

Abstract

Recent studies suggest that Antarctica has the potential to contribute up to ~15 m of sea-level rise over the next few centuries. The evolution of the Antarctic Ice Sheet is driven by a combination of climate forcing and non-climatic feedbacks. In this review we focus on feedbacks between the Antarctic Ice Sheet and the solid Earth, and the role of these feedbacks in shaping the response of the ice sheet to past and future climate changes. The growth and decay of the Antarctic Ice Sheet reshapes the solid Earth via isostasy and erosion. In turn, the shape of the bed exerts a fundamental control on ice dynamics as well as the position of the grounding line-the location where ice starts to float. A complicating issue is the fact that Antarctica is situated on a region of the Earth that displays large spatial variations in rheological properties. These properties affect the timescale and strength of feedbacks between ice-sheet change and solid Earth deformation, and hence must be accounted for when considering the future evolution of the ice sheet.

摘要

最近的研究表明,在未来几个世纪里,南极洲有可能导致海平面上升约 15 米。南极冰盖的演化是由气候强迫和非气候反馈共同驱动的。在这篇综述中,我们专注于南极冰盖与固体地球之间的反馈,以及这些反馈在塑造冰盖对过去和未来气候变化的响应方面的作用。南极冰盖的生长和衰减通过均衡和侵蚀重塑固体地球。反过来,床的形状对冰动力学以及冰开始漂浮的位置(即基线位置)起着基本的控制作用。一个复杂的问题是,南极洲位于地球的一个区域,该区域的流变学性质存在很大的空间变化。这些特性影响冰盖变化和固体地球变形之间反馈的时间尺度和强度,因此在考虑冰盖的未来演化时必须考虑到这些因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9516/6353952/a82e383bd8e9/41467_2018_8068_Fig3_HTML.jpg

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