Dunmire D, Lenaerts J T M, Banwell A F, Wever N, Shragge J, Lhermitte S, Drews R, Pattyn F, Hansen J S S, Willis I C, Miller J, Keenan E
Department of Atmospheric and Oceanic Sciences University of Colorado Boulder Boulder CO USA.
Cooperative Institute for Research in Environmental Sciences (CIRES) Boulder CO USA.
Geophys Res Lett. 2020 Aug 16;47(15):e2020GL087970. doi: 10.1029/2020GL087970. Epub 2020 Jul 31.
Between 1992 and 2017, the Antarctic Ice Sheet (AIS) lost ice equivalent to 7.6 ± 3.9 mm of sea level rise. AIS mass loss is mitigated by ice shelves that provide a buttress by regulating ice flow from tributary glaciers. However, ice-shelf stability is threatened by meltwater ponding, which may initiate, or reactivate preexisting, fractures, currently poorly understood processes. Here, through ground penetrating radar (GPR) analysis over a buried lake in the grounding zone of an East Antarctic ice shelf, we present the first field observations of a lake drainage event in Antarctica via vertical fractures. Concurrent with the lake drainage event, we observe a decrease in surface elevation and an increase in Sentinel-1 backscatter. Finally, we suggest that fractures that are initiated or reactivated by lake drainage events in a grounding zone will propagate with ice flow onto the ice shelf itself, where they may have implications for its stability.
1992年至2017年间,南极冰盖(AIS)损失的冰相当于海平面上升7.6±3.9毫米。冰架通过调节支流冰川的冰流提供支撑,从而减轻了南极冰盖的质量损失。然而,融水积聚威胁着冰架的稳定性,融水积聚可能引发或重新激活先前存在的裂缝,而目前对这些过程的了解甚少。在此,通过对东南极冰架接地带一个掩埋湖泊的探地雷达(GPR)分析,我们首次实地观测到南极洲通过垂直裂缝发生的湖泊排水事件。与湖泊排水事件同时发生的是,我们观测到地表高程下降,哨兵-1号后向散射增加。最后,我们认为,在接地带由湖泊排水事件引发或重新激活的裂缝将随着冰流向冰架本身传播,这可能会对冰架的稳定性产生影响。