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首页> 外文期刊>Geoscientific Model Development >Dynamically coupling full Stokes and shallow shelf approximation for marine ice sheet flow using Elmer/Ice (v8.3)
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Dynamically coupling full Stokes and shallow shelf approximation for marine ice sheet flow using Elmer/Ice (v8.3)

机译:使用Elmer / Ice(v8.3)动态耦合全Stokes和浅层架子逼近以用于海洋冰盖流动

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摘要

Ice flow forced by gravity is governed by the full Stokes (FS) equations, which are computationally expensive to solve due to the nonlinearity introduced by the rheology. Therefore, approximations to the FS equations are commonly used, especially when modeling a marine ice sheet (ice sheet, ice shelf, and/or ice stream) for 10sup3/sup?years or longer. The shallow ice approximation (SIA) and shallow shelf approximation (SSA) are commonly used but are accurate only for certain parts of an ice sheet. Here, we report a novel way of iteratively coupling FS and SSA that has been implemented in Elmer/Ice and applied to conceptual marine ice sheets. The FS–SSA coupling appears to be very accurate; the relative error in velocity compared to FS is below 0.5 % for diagnostic runs and below 5 % for prognostic runs. Results for grounding line dynamics obtained with the FS–SSA coupling are similar to those obtained from an FS model in an experiment with a periodical temperature forcing over 3000?years that induces grounding line advance and retreat. The rapid convergence of the FS–SSA coupling shows a large potential for reducing computation time, such that modeling a marine ice sheet for thousands of years should become feasible in the near future. Despite inefficient matrix assembly in the current implementation, computation time is reduced by 32 %, when the coupling is applied to a 3-D ice shelf.
机译:受重力作用的冰流由完整的斯托克斯(FS)方程控制,由于流变学引入的非线性,解决这些问题的计算量很大。因此,通常使用FS方程的近似值,尤其是在对海洋冰盖(冰盖,冰架和/或冰流)建模10 3 年或更长时间时。通常使用浅冰近似(SIA)和浅冰层近似(SSA),但仅对冰盖的某些部分才是准确的。在这里,我们报告了一种在Elmer / Ice中实施的将FS和SSA迭代耦合的新颖方法,并将其应用于概念性海洋冰盖。 FS-SSA耦合看起来非常准确;与FS相比,速度的相对误差在诊断运行中小于0.5%,在预后运行中小于5%。通过FS-SSA耦合获得的接地线动力学结果与从FS模型获得的结果相似,该实验是在周期性温度强迫超过3000?year的实验中引起的,该温度会引起接地线的进退。 FS-SSA耦合的快速收敛显示出减少计算时间的巨大潜力,因此在不久的将来对数千年的海洋冰盖进行建模应该变得可行。尽管在当前实现中矩阵组装效率低下,但是当将耦合应用于3-D冰架时,计算时间却减少了32%。

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