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首页> 外文期刊>Journal of Physical Oceanography >The Effects of Rotation and Ice Shelf Topography on Frazil-Laden Ice Shelf Water Plumes
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The Effects of Rotation and Ice Shelf Topography on Frazil-Laden Ice Shelf Water Plumes

机译:旋转和冰架地形对满载巴西水冰架水柱的影响

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摘要

A model of the dynamics and thermodynamics of a plume of meltwater at the base of an ice shelf is presented. Such ice shelf water plumes may become supercooled and deposit marine ice if they rise (because of the pressure decrease in the in situ freezing temperature), so the model incorporates both melting and freezing at the ice shelf base and a multiple-size-class model of frazil ice dynamics and deposition. The plume is considered in two horizontal dimensions, so the influence of Coriolis forces is incorporated for the first time. It is found that rotation is extremely influential, with simulated plumes flowing in near-geostrophy because of the low friction at a smooth ice shelf base. As a result, an ice shelf water plume will only rise and become supercooled (and thus deposit marine ice) if it is constrained to flow upslope by topography. This result agrees with the observed distribution of marine ice under Filchner-Ronne Ice Shelf, Antarctica. In addition, it is found that the model only produces reasonable marine ice formation rates when an accurate ice shelf draft is used, implying that the characteristics of real ice shelf water plumes can only be captured using models with both rotation and a realistic topography.
机译:提出了在冰架底部的融水羽流的动力学和热力学模型。这样的冰架水烟柱可能会过冷并上升(由于原地冻结温度的压力降低)而沉积海冰,因此该模型将冰架底部的融化和冻结功能结合在一起,并建立了多尺寸分类模型的冰动力学和沉积在两个水平方向上考虑了羽状流,因此首次纳入了科里奥利力的影响。发现旋转非常有影响,因为在光滑的冰架底部摩擦小,模拟的羽流在近地转中流动。结果,如果冰架的水流受到地形的限制而向上倾斜,那么冰架的水流只会上升并变得过冷(从而沉积海冰)。该结果与南极Filchner-Ronne冰架下观测到的海冰分布一致。此外,发现使用精确的冰架吃水量时,该模型仅会产生合理的海洋冰形成速率,这意味着只能使用具有旋转和真实地形的模型才能捕获实际冰架水羽的特征。

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