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首页> 外文期刊>Science Advances >Sliding dominates slow-flowing margin regions, Greenland Ice Sheet
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Sliding dominates slow-flowing margin regions, Greenland Ice Sheet

机译:滑动占据慢流动的边缘地区,格陵兰冰盖

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On the Greenland Ice Sheet (GrIS), ice flow due to deformation and sliding across the bed delivers ice to lower-elevation marginal regions where it can melt. We measured the two mechanisms of motion using a three-dimensional array of 212 tilt sensors installed within a network of boreholes drilled to the bed in the ablation zone of GrIS. Unexpectedly, sliding completely dominates ice motion all winter, despite a hard bedrock substrate and no concurrent surface meltwater forcing. Modeling constrained by detailed tilt observations made along the basal interface suggests that the high sliding is due to a slippery bed, where sparsely spaced bedrock bumps provide the limited resistance to sliding. The conditions at the site are characterized as typical of ice sheet margins; thus, most ice flow near the margins of GrIS is mainly from sliding, and marginal ice fluxes are near their theoretical maximum for observed surface speeds.
机译:在格陵兰冰板(GRIS)上,由于变形和穿过床的滑动引起的冰流为其熔化的冰至下高度边缘区域。我们测量了使用安装在Gris的钻孔的钻孔网络内的三维阵列的三维阵列的两个运动机制。竟然,尽管硬质基岩基板和不同时的表面熔融迫使,但仍然占据了冰运动的完全占据了冰运动。沿基部界面制作的详细倾斜观测的建模表明,高滑动是由于滑动床,其中稀疏间隔的基岩凸块提供有限的滑动抗性。该网站的条件表征为冰盖边缘的典型;因此,GRIS边缘附近的大多数冰流量主要来自滑动,边缘冰通量近于观察到的表面速度的理论最大值。

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