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南极半岛变暖引发了整个西南极洲基底融化速率的加快。

Antarctic Peninsula warming triggers enhanced basal melt rates throughout West Antarctica.

作者信息

Flexas M Mar, Thompson Andrew F, Schodlok Michael P, Zhang Hong, Speer Kevin

机构信息

Environmental Science and Engineering, California Institute of Technology, Pasadena, CA 91125, USA.

Jet Propulsion Laboratory, California Institute of Technology, Pasadena, CA 91109, USA.

出版信息

Sci Adv. 2022 Aug 12;8(32):eabj9134. doi: 10.1126/sciadv.abj9134.

Abstract

The observed acceleration of ice shelf basal melt rates throughout West Antarctica could destabilize continental ice sheets and markedly increase global sea level. Explanations for decadal-scale melt intensification have focused on processes local to shelf seas surrounding the ice shelves. A suite of process-based model experiments, guided by CMIP6 forcing scenarios, show that freshwater forcing from the Antarctic Peninsula, propagated between marginal seas by a coastal boundary current, causes enhanced melting throughout West Antarctica. The freshwater anomaly stratifies the ocean in front of the ice shelves and modifies vertical and lateral heat fluxes, enhancing heat transport into ice shelf cavities and increasing basal melt. Increased glacial runoff at the Antarctic Peninsula, one of the first signatures of a warming climate in Antarctica, emerges as a key trigger for increased ice shelf melt rates in the Amundsen and Bellingshausen Seas.

摘要

整个西南极洲冰架底部融化速率的加速观测可能会使大陆冰盖不稳定,并显著提高全球海平面。对十年尺度融化加剧的解释主要集中在冰架周围陆架海域的局部过程。在CMIP6强迫情景的指导下进行的一系列基于过程的模型实验表明,南极半岛的淡水强迫通过沿岸边界流在边缘海之间传播,导致整个西南极洲融化加剧。淡水异常使冰架前方的海洋分层,并改变垂直和横向热通量,增强进入冰架腔的热传输并增加底部融化。南极半岛冰川径流增加是南极气候变暖的首批特征之一,是阿蒙森海和别林斯高晋海冰架融化速率增加的关键触发因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c0a3/9374342/abf93af2beb6/sciadv.abj9134-f1.jpg

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