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首页> 外文期刊>Journal of geophysical research. Earth Surface: JGR >Continental scale, high order, high spatial resolution, ice sheet modeling using the Ice Sheet System Model (ISSM)
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Continental scale, high order, high spatial resolution, ice sheet modeling using the Ice Sheet System Model (ISSM)

机译:大陆规模,高阶,高空间分辨率,使用Ice Sheet System Model(ISSM)进行冰盖建模

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Ice flow models used to project the mass balance of ice sheets in Greenland and Antarctica usually rely on the Shallow Ice Approximation (SIA) and the Shallow-Shelf Approximation (SSA), sometimes combined into so-called "hybrid" models. Such models, while computationally efficient, are based on a simplified set of physical assumptions about the mechanical regime of the ice flow, which does not uniformly apply everywhere on the ice sheet/ice shelf system, especially near grounding lines, where rapid changes are taking place at present. Here, we present a new thermomechanical finite element model of ice flow named ISSM (Ice Sheet System Model) that includes higher-order stresses, high spatial resolution capability and data assimilation techniques to better capture ice dynamics and produce realistic simulations of ice sheet flow at the continental scale. ISSM includes several approximations of the momentum balance equations, ranging from the two-dimensional SSA to the three-dimensional full-Stokes formulation. It also relies on a massively parallelized architecture and state-of-the-art scalable tools. ISSM employs data assimilation techniques, at all levels of approximation of the momentum balance equations, to infer basal drag at the ice-bed interface from satellite radar interferometry-derived observations of ice motion. Following a validation of ISSM with standard benchmarks, we present a demonstration of its capability in the case of the Greenland Ice Sheet. We show ISSM is able to simulate the ice flow of an entire ice sheet realistically at a high spatial resolution, with higher-order physics, thereby providing a pathway for improving projections of ice sheet evolution in a warming climate.
机译:用于预测格陵兰岛和南极洲冰盖质量平衡的冰流模型通常依赖于浅冰近似值(SIA)和浅层近似值(SSA),有时还组合成所谓的“混合”模型。这样的模型虽然计算效率高,但是基于关于冰流机械状态的一组简化的物理假设,这些假设并不能均匀地应用于冰盖/冰架系统上的所有地方,尤其是在接地线附近,因为那里发生了快速变化目前位置。在这里,我们提出了一种新的冰流热机械有限元模型,称为ISSM(冰床系统模型),该模型包括高阶应力,高空间分辨率能力和数据同化技术,可以更好地捕获冰动力并在冰点产生逼真的冰流模拟。大陆规模。 ISSM包括动量平衡方程的多个近似值,从二维SSA到三维Full-Stokes公式。它还依赖于大规模并行化的体系结构和最新的可伸缩工具。 ISSM在动量平衡方程的所有近似水平上都采用了数据同化技术,从卫星雷达干涉法得出的冰运动观测结果推断出冰床界面处的基础阻力。在通过标准基准对ISSM进行验证之后,我们将展示其在格陵兰冰原方面的能力。我们证明,ISSM能够以高阶物理逼真度以高空间分辨率逼真地模拟整个冰原的冰流,从而为改善气候变暖中冰原演化的预测提供了一条途径。

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