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A New Numerical Model of Coupled Inland Ice Sheet, Ice Stream, and Ice Shelf Flow and its Application to the West Antarctic Ice Sheet

机译:内陆冰盖,冰流和冰架流耦合的新数值模型及其在西南极冰盖上的应用

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摘要

We have developed a dynamic/thermodynamic finite element numerical model that couples inland ice sheet, ice stream, and ice shelf dynamics. This new model stands apart from other whole ice sheet models in its explicit treatment of ice stream flow. Additionally, the model accounts for both horizontal and vertical advection and diffusion of temperature in the flowing ice. In present day simulations of the West Antarctic Ice Sheet (WAIS), modeled ice velocity agrees well with observed ice flow. In particular, the model reproduces the pattern of speed variation across ice streams although the continuous downstream speed up of ice flow cannot be reproduced without concurrent downstream variation in basal friction. Model thermodynamics, evaluated qualitatively by model prediction of the spatial distribution of basal melting and quantitatively by comparison with ice temperature measured in boreholes at several locations, are sound. In particular, the model reproduces the broad pattern of frozen-bed inter-ice stream ridges and melted-bed ice streams. Model initialization for long-time simulations is somewhat limited by computation time and by a thermodynamic feedback at sites of large viscous heating that can be a problem in heat balance only model initializations. Methods for averting those initialization problems are discussed. The new model can accommodate a variety of boundary conditions (such as various bed rheologies) and is well-suited to investigate the origin and evolution of WAIS ice streams within the context of the whole ice sheet system.
机译:我们已经开发了一个动态/热力学有限元数值模型,该模型将内陆冰原,冰流和冰架动力学耦合在一起。该新模型在对冰流的显式处理方面与其他整个冰原模型不同。此外,该模型还考虑了水平和垂直对流以及流冰中温度的扩散。在当今对南极冰原(WAIS)的模拟中,模拟的冰速与观测到的冰流非常吻合。特别地,该模型再现了冰流速度变化的模式,尽管如果没有基础摩擦的同时下游变化就不能再现冰流的连续下游加速。通过对基础融化空间分布的模型预测进行定性评估,并与在多个位置的钻孔中测得的冰温进行定量比较,可以对模型的热力学进行定性评估。特别是,该模型再现了冰冻床间冰流脊和融化床冰流的广泛格局。长时间仿真的模型初始化在某种程度上受到计算时间和在大粘性加热点处的热力学反馈的限制,这在仅进行模型初始化的热平衡中可能是一个问题。讨论了避免这些初始化问题的方法。新模型可以适应各种边界条件(例如各种床层流变学),非常适合在整个冰盖系统范围内研究WAIS冰流的起源和演变。

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