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Basal friction of Fleming Glacier, Antarctica – Part 1: Sensitivity of inversion to temperature and bedrock uncertainty

机译:南极弗莱明冰川的基础摩擦–第1部分:温度和基岩不确定性反演的敏感性

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Many glaciers in the Antarctic Peninsula are now rapidly losing mass. Understanding of the dynamics of these fast-flowing glaciers, and their potential future behaviour, can be improved through ice sheet modelling studies. Inverse methods are commonly used in ice sheet models to infer the spatial distribution of a basal friction coefficient, which has a large effect on the basal velocity and ice deformation. Here we use the full-Stokes Elmer/Ice model to simulate the Wordie Ice Shelf–Fleming Glacier system in the southern Antarctic Peninsula. With an inverse method, we infer the pattern of the basal friction coefficient from surface velocities observed in 2008. We propose a multi-cycle spin-up scheme to reduce the influence of the assumed initial englacial temperature field on the final inversion. This is particularly important for glaciers like the Fleming Glacier, which have areas of strongly temperature-dependent deformational flow in the fast-flowing regions. Sensitivity tests using various bed elevation datasets, ice front positions and boundary conditions demonstrate the importance of high-accuracy ice thickness/bed geometry data and precise location of the ice front boundary.
机译:现在,南极半岛的许多冰川正在迅速消失。可以通过冰盖模型研究来增进对这些快速流动冰川的动力学及其未来潜在行为的了解。在冰盖模型中通常使用反演方法来推断基础摩擦系数的空间分布,这对基础速度和冰的变形影响很大。在这里,我们使用完整的Stokes Elmer / Ice模型来模拟南极半岛南部的Wordie冰架-弗莱明冰川系统。使用反演方法,我们从2008年观察到的表面速度推断出基础摩擦系数的模式。我们提出了一种多周期旋转方案,以减少假定的初始冰川温度场对最终反演的影响。对于像弗莱明冰川这样的冰川来说,这尤其重要,因为冰川在快速流动的区域中具有强烈的温度相关变形流区域。使用各种床高程数据集,冰锋位置和边界条件进行的敏感性测试证明了高精度冰厚度/床几何数据和冰锋边界的精确位置的重要性。

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