南极冰盖未来的淡水通量

IF 4.6 1区 地球科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY
Violaine Coulon, Jan De Rydt, Thomas Gregov, Qing Qin, Frank Pattyn
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引用次数: 0

摘要

由南极冰盖融水排放驱动的南大洋表面变新鲜已被证明会影响全球气候动力学。然而,大多数气候模式未能考虑到空间和时间变化的冰盖淡水输入,给气候预估带来了很大的不确定性。我们提出了第一个历史校准的南极淡水通量预估(亚大陆架融化、冰裂和地表融水径流)到2300年,可用于强迫缺乏相互作用冰盖的气候模型。我们的研究结果表明,在未来几十年和几个世纪,特别是在非常高的变暖情景下,由于南极西部冰架的逐渐崩塌,南极淡水流量的大小和分配将发生实质性变化。我们预测南极淡水资源的形式和位置将发生变化,因为在考虑的两种气候情景下,液态大陆架下的融化会增加,而在极端大气变暖的情况下,地表融水径流可能成为主要的贡献因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Future Freshwater Fluxes From the Antarctic Ice Sheet

Future Freshwater Fluxes From the Antarctic Ice Sheet

Surface freshening of the Southern Ocean driven by meltwater discharge from the Antarctic ice sheet has been shown to influence global climate dynamics. However, most climate models fail to account for spatially and temporally varying freshwater inputs from ice sheets, introducing significant uncertainty into climate projections. We present the first historically calibrated projections of Antarctic freshwater fluxes (sub-shelf melting, calving, and surface meltwater runoff) to 2300 that can be used to force climate models lacking interactive ice sheets. Our findings indicate substantial changes in the magnitude and partitioning of Antarctic freshwater discharge over the coming decades and centuries, particularly under very-high warming scenarios, driven by the progressive collapse of the West Antarctic ice shelves. We project a shift in the form and location of Antarctic freshwater sources, as liquid sub-shelf melting increases under the two climate scenarios considered, and surface meltwater runoff could potentially become a dominant contributor under extreme atmospheric warming.

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来源期刊
Geophysical Research Letters
Geophysical Research Letters 地学-地球科学综合
CiteScore
9.00
自引率
9.60%
发文量
1588
审稿时长
2.2 months
期刊介绍: Geophysical Research Letters (GRL) publishes high-impact, innovative, and timely research on major scientific advances in all the major geoscience disciplines. Papers are communications-length articles and should have broad and immediate implications in their discipline or across the geosciences. GRLmaintains the fastest turn-around of all high-impact publications in the geosciences and works closely with authors to ensure broad visibility of top papers.
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