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格陵兰冰川峡湾的动态及其在气候中的作用。

The Dynamics of Greenland's Glacial Fjords and Their Role in Climate.

机构信息

Woods Hole Oceanographic Institution, Woods Hole, Massachusetts 02543; email:

出版信息

Ann Rev Mar Sci. 2015;7:89-112. doi: 10.1146/annurev-marine-010213-135133. Epub 2014 Aug 13.

Abstract

Rapid mass loss from the Greenland Ice Sheet has sparked interest in its glacial fjords for two main reasons: Increased submarine melting of glaciers terminating in fjords is a plausible trigger for glacier retreat, and the anomalous freshwater discharged from Greenland is transformed by fjord processes before being released into the large-scale ocean. Knowledge of the fjords' dynamics is thus key to understanding ice sheet variability and its impact on climate. Although Greenland's fjords share some commonalities with other fjords, their deep sills and deeply grounded glaciers, the presence of Atlantic and Polar Waters on the continental shelves outside the fjords' mouths, and the seasonal discharge at depth of large amounts of surface melt make them unique systems that do not fit existing paradigms. Major gaps in understanding include the interaction of the buoyancy-driven circulation (forced by the glacier) and shelf-driven circulation, and the dynamics in the near-ice zone. These must be addressed before appropriate forcing conditions can be supplied to ice sheet and ocean/climate models.

摘要

格陵兰冰原的快速质量损失引起了人们对其冰川峡湾的兴趣,主要有两个原因:在峡湾处终止的冰川的海底融化增加,这是冰川后退的一个合理触发因素;从格陵兰释放的异常淡水在被释放到大规模海洋之前,会受到峡湾过程的影响。因此,了解峡湾的动力学是理解冰原变化及其对气候影响的关键。尽管格陵兰的峡湾与其他峡湾有一些共同之处,但它们的深海槽和深深扎根的冰川、峡湾口外大陆架上存在的大西洋和极地水,以及季节性地在深处排放大量表面融化水,使它们成为不符合现有模式的独特系统。在理解方面存在重大差距,包括浮力驱动循环(由冰川驱动)和陆架驱动循环之间的相互作用,以及近冰区的动力学。在为冰原和海洋/气候模型提供适当的强迫条件之前,必须解决这些问题。

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