首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Seasonal and interannual variabilities in terminus position, glacier velocity, and surface elevation at Helheim and Kangerlussuaq Glaciers from 2008 to 2016
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Seasonal and interannual variabilities in terminus position, glacier velocity, and surface elevation at Helheim and Kangerlussuaq Glaciers from 2008 to 2016

机译:从2008年到2016年,赫尔海姆和康内斯鲁斯冰川的季节性和持续的季节性和际变量以及赫尔赫姆和康勒斯鲁鲁斯冰川的阶段升高

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The dynamic response of Greenland tidewater glaciers to oceanic and atmospheric change has varied both spatially and temporally. While some of this variability is likely related to regional climate signals, glacier geometry also appears to be important. In this study, we investigated the environmental and geometric controls on the seasonal and interannual evolution of Helheim and Kangerlussuaq Glaciers, Southeast Greenland, from 2008 to 2016, by combining year-round, satellite measurements of terminus position, glacier velocity, and surface elevation. While Helheim remained relatively stable with a lightly grounded terminus over this time period, Kangerlussuaq continued to lose mass as its grounding line retreated into deeper water. By summer 2011, Kangerlussuaq's grounding line had retreated into shallower water, and the glacier had an similar to 5km long floating ice tongue. We also observed seasonal variations in surface velocity and elevation at both glaciers. At Helheim, seasonal speedups and dynamic thinning occurred in the late summer when the terminus was most retreated. At Kangerlussuaq, we observed summer speedups due to surface-melt-induced basal lubrication and winter speedups due to ice-shelf retreat. We suggest that Helheim and Kangerlussuaq behaved differently on a seasonal timescale due to differences in the spatial extent of floating ice near their termini, which affected iceberg-calving behavior. Given that seasonal speedups and dynamic thinning can alter this spatial extent, these variations may be important for understanding the long-term evolution of these and other Greenland tidewater glaciers.
机译:格陵兰的潮水冰川动态响应于海洋和大气变化在空间和时间变化两者。虽然一些这种变异可能与区域气候信号,冰川几何形状也显得很重要。在这项研究中,我们调查了环境和几何控制在黑尔海姆和康克鲁斯瓦格冰川,东南亚格陵兰的季节和年际变化2008年至2016年,通过合并的末端位置,冰川速度,和面高程全年,卫星测量。虽然黑尔海姆超过这个时间段轻度接地端保持相对稳定,堪格尔路斯瓦克继续失去质量作为其接地线撤退到更深的水域。到2011年夏天,堪格尔路斯瓦克的接地线已经撤退到较浅的水,冰川有一个类似到5公里长的浮动冰舌。我们还在两个冰川观察到表面的速度和标高的季节性变化。在黑尔海姆,季节性的加速和动态变薄发生在夏末当终点是最后退。在康克鲁斯瓦格,我们观察到夏天的加速,由于表面融化引起的基础润滑和冬季的加速,由于冰架撤退。我们认为,黑尔海姆和堪格尔路斯瓦克表现不同上一季节尺度由于浮冰接近其末端,从而影响冰山产犊行为的空间范围的差异。考虑到季节性的加速和动态变薄可以改变此空间范围,这些变化可能是理解这些长期演进等格陵兰冰川潮水重要。

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