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Ice-shelf basal melting in a global finite-element sea-ice/ice-shelf/ocean model

机译:全球有限元海冰/冰架/海洋模型中的冰架基础融化

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The Finite Element Sea-ice Ocean Model (FESOM) has been augmented by an ice-shelf component with a three-equation system for diagnostic computation of boundary layer temperature and salinity. Ice-shelf geometry and global ocean bathymetry have been derived from the RTopo-1 dataset. A global domain with a triangular mesh and a hybrid vertical coordinate is used. To evaluate sub-iceshelf circulation and melt rates for present-day climate, the model is forced with NCEP reanalysis data. Basal mass fluxes are mostly realistic, with maximum melt rates in the deepest parts near the grounding lines and marine ice formation in the northern sectors of the Ross and Filchner-Ronne Ice Shelves, Antarctica. Total basal mass loss for the ten largest ice shelves reflects the importance of the Amundsen Sea ice shelves; the Getz ice Shelf is shown to be a major meltwater contributor to the Southern Ocean. Despite their modest melt rates, the 'cold water' ice shelves in the Weddell Sea are still substantial sinks of continental ice in Antarctica. Discrepancies between the model and observations can partly be attributed to deficiencies in the forcing data or to (sometimes unavoidable) smoothing of ice-shelf and bottom topographies.
机译:有限元海冰海洋模型(FESOM)已通过带有三方程式系统的冰架组件进行了增强,用于边界层温度和盐度的诊断计算。冰架的几何形状和全球海洋测深已从RTopo-1数据集获得。使用具有三角形网格和混合垂直坐标的全局域。为了评估当前气候下的冰期循环和融化速率,必须使用NCEP再分析数据对模型进行强制。基本质量通量大多是现实的,南极罗斯和菲尔克纳-罗讷冰架的北部地区,在接地线附近最深的部分具有最大的融化速率,并且形成了海冰。十个最大的冰架的总基础质量损失反映了阿蒙森海冰架的重要性;盖茨冰架被证明是南大洋的主要融水贡献者。尽管融水速度适中,但韦德尔海的“冷水”冰架仍然是南极洲大陆冰的重要汇。该模型与观测值之间的差异部分可以归因于强迫数据的不足,也可以归因于冰架和底部地形的平滑(有时是不可避免的)。

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