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Representing Grounding Line Dynamics in Numerical Ice Sheet Models: Recent Advances and Outlook

机译:代表数值冰盖模型中的接地线动力学:最近的进展和前景

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Recent satellite observations of the Antarctic and Greenland ice sheets show accelerated ice flow and associated ice sheet thinning along coastal outlet glaciers in contact with the ocean. Both processes are the result of grounding line retreat due to melting at the grounding line (the grounding line is the contact of the ice sheet with the ocean, where it starts to float and forms an ice shelf or ice tongue). Such rapid ice loss is not yet included in large-scale ice sheet models used for IPCC projections, as most of the complex processes are poorly understood. Here we report on the state-of-the art of grounding line migration in marine ice sheets and address different ways in which grounding line migration can be attributed and represented in ice sheet models. Using one-dimensional ice flow models of the ice sheet/ice shelf system we carried out a number of sensitivity experiments with different spatial resolutions and stress approximations. These are verified with semi-analytical steady state solutions. Results show that, in large-scale finite-difference models, grounding line migration is dependent on the numerical treatment (e.g. staggered/non-staggered grid) and the level of physics involved (e.g. shallow-ice/ shallow-shelf approximation).
机译:最近的南极和格陵兰冰盖的卫星观察显示加速冰流量和沿着海洋接触的沿海出口冰川的相关冰盖稀疏。两个过程是由于在接地线处熔化导致的接地线退缩的结果(接地线是冰盖与海洋的接触,在那里开始漂浮并形成冰架或冰舌)。这种快速冰损尚未包含在用于IPCC投影​​的大型冰板模型中,因为大多数复杂过程都很糟糕。在这里,我们报告了船用冰盖中的接地线迁移的最新技术,并解决了冰层模型中的接地线迁移的不同方式。使用冰盖/砧型系统的一维冰流模型,我们进行了许多具有不同空间分辨率和应力近似的敏感性实验。这些通过半分析稳态解决方案验证。结果表明,在大型有限差分模型中,接地线迁移取决于数值治疗(例如交错/非交错网格)和所涉及的物理水平(例如,浅冰/浅架近似)。

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