首页> 外文期刊>Journal of Glaciology >Changes in ice-shelf buttressing following the collapse of Larsen A Ice Shelf, Antarctica, and the resulting impact on tributaries
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Changes in ice-shelf buttressing following the collapse of Larsen A Ice Shelf, Antarctica, and the resulting impact on tributaries

机译:拉尔森冰架,南极洲,南极洲和由此产生对支流的影响之后的冰货架上的变化

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The dominant mass-loss process on the Antarctic Peninsula has been ice-shelf collapse, including the Larsen A Ice Shelf in early 1995. Following this collapse, there was rapid speed up and thinning of its tributary glaciers. We model the impact of this ice-shelf collapse on upstream tributaries, and compare with observations using new datasets of surface velocity and ice thickness. Using a two-horizontal-dimension shallow shelf approximation model, we are able to replicate the observed large increase in surface velocity that occurred within Drygalski Glacier, Antarctic Peninsula. The model results show an instantaneous twofold increase in flux across the grounding line, caused solely from the reduction in backstress through ice shelf removal. This demonstrates the importance of ice-shelf buttressing for flow upstream of the grounding line and highlights the need to explicitly include lateral stresses when modelling real-world settings. We hypothesise that further increases in velocity and flux observed since the ice-shelf collapse result from transient mass redistribution effects. Reproducing these effects poses the next, more stringent test of glacier and ice-sheet modelling studies.
机译:南极半岛的主导大气损失过程一直是冰货架崩溃,包括1995年初的拉尔森一架冰架。在这一崩溃之后,对其支流冰川的快速加速和变薄。我们模拟了这种冰货架折叠对上游支流的影响,并与使用表面速度和冰厚度的新数据集进行比较。使用双水平尺寸浅水逼近近似模型,我们能够复制观察到的大速度较大的表面速度,即Drygalski冰川,南极半岛。模型结果显示跨越接地线的磁通量的瞬时双重增加,仅从冰架去除后抵抗。这证明了冰架支架对接地线上游流动的重要性,并且突出显示在建模现实世界环境时明确地包括横向应力的需要。我们假设,由于瞬态质量再分布效应,因此观察到速度和助熔剂的进一步增加。再现这些效果造成了对冰川和冰板建模研究的下一个更严格的测试。

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