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Changes in glacier dynamics in the northern Antarctic Peninsula since 1985

机译:自1985年以来南极半岛北部的冰川动力学变化

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The climatic conditions along the northern Antarctic Peninsula have shown significant changes within the last 50?years. Here we present a?comprehensive analysis of temporally and spatially detailed observations of the changes in ice dynamics along both the east and west coastlines of the northern Antarctic Peninsula. Temporal evolutions of glacier area (1985–2015) and ice surface velocity (1992–2014) are derived from a?broad multi-mission remote sensing database for 74?glacier basins on the northern Antarctic Peninsula (?2/sup is found for the period 1985–2015, of which the glaciers affected by ice shelf disintegration showed the largest retreat by 208.59 kmsup2/sup. Glaciers on the east coast north of the former Prince Gustav Ice Shelf extent in 1986 receded by only 21.07 kmsup2/sup (1985–2015) and decelerated by about 58 % on average (1992–2014). A?dramatic acceleration after ice shelf disintegration with a?subsequent deceleration is observed at most former ice shelf tributaries on the east coast, combined with a?significant frontal retreat. In 2014, the flow speed of the former ice shelf tributaries was 26 % higher than before 1996. Along the west coast the average flow speeds of the glaciers increased by 41 %. However, the glaciers on the western Antarctic Peninsula revealed a?strong spatial variability of the changes in ice dynamics. By applying a?hierarchical cluster analysis, we show that this is associated with the geometric parameters of the individual glacier basins (hypsometric indexes, maximum surface elevation of the basin, flux gate to catchment size ratio). The heterogeneous spatial pattern of ice dynamic evolutions at the northern Antarctic Peninsula shows that temporally and spatially detailed observations as well as further monitoring are necessary to fully understand glacier change in regions with such strong topographic and climatic variances.
机译:在过去的50年中,南极半岛北部的气候条件已显示出重大变化。在这里,我们对南极半岛北部和东部海岸线沿冰动力学的时空变化观测进行了全面的分析。冰川面积(1985–2015)的时间演变和冰面速度(1992–2014)来自南极半岛北部74个冰川盆地的广泛多任务遥感数据库(发现?2 1985-2015年期间,受冰架崩解影响的冰川退缩最大,为208.59 km 2 。1986年在前古斯塔夫王子冰架以北东海岸的冰川消退了1986年。仅21.21。km 2 (1985–2015)并平均减速约58%(1992–2014)。在大多数以前的冰架上观察到冰架解体后剧烈加速并随后减速。东海岸的支流,加上明显的后退,2014年,原冰架支流的流速比1996年之前高26%,沿西海岸,冰川的平均流速增加了41%。然而,南极半岛西部的冰川揭示出冰动力学变化的空间变异性。通过应用层次聚类分析,我们表明这与单个冰川盆地的几何参数(水势指数,盆地最大表面高度,流量闸与集水面积之比)有关。南极半岛北部冰动力演化的非均质空间格局表明,要充分了解具有如此强烈地形和气候变化的地区的冰川变化,必须进行时空上的详细观测以及进一步的监测。

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