首页> 外文期刊>Annals of Glaciology >Numerical experiments on subaqueous melting of Greenland tidewater glaciers in response to ocean warming and enhanced subglacial discharge
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Numerical experiments on subaqueous melting of Greenland tidewater glaciers in response to ocean warming and enhanced subglacial discharge

机译:格陵兰岛潮水冰川水下融化响应海洋变暖和冰川下流量增加的数值实验

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摘要

The largest dischargers of ice in Greenland are glaciers that terminate in the ocean and melt in contact with sea water. Studies of ice-sheet/ocean interactions have mostly focused on melting beneath near-horizontal floating ice shelves. For tidewater glaciers, melting instead takes place along the vertical face of the calving front. Here we modify the Massachusetts Institute of Technology general circulation model (MITgcm) to include ice melting from a calving face with the freshwater outflow at the glacier grounding line. We use the model to predict melt rates and their sensitivity to ocean thermal forcing and to subglacial discharge. We find that melt rates increase with approximately the one-third power of the subglacial water flux, and increase linearly with ocean thermal forcing. Our simulations indicate that, consistent with limited field data, melting ceases when subglacial discharge is shut off, and reaches several meters per day when subglacial discharge is high in the summer. These results are a first step toward a more realistic representation of subglacial discharge and of ocean thermal forcing on the subaqueous melting of tidewater glaciers in a numerical ocean model. Our results illustrate that the ice-front melting process is both complex and strongly time-dependent.
机译:格陵兰岛最大的冰排放者是终止于海洋并与海水接触融化的冰川。冰盖/海洋相互作用的研究主要集中在近水平的浮冰架下面的融化。对于潮水冰川,融化发生在产犊锋面的垂直面上。在这里,我们修改了麻省理工学院的一般循环模型(MITgcm),以包括从产犊面融化的冰和冰川接地线处的淡水流出。我们使用该模型来预测融化速率及其对海洋热强迫和冰川下排放的敏感性。我们发现,融化速率随着冰下水通量的三分之一功率而增加,并且随着海洋热强迫线性增加。我们的模拟表明,与有限的现场数据一致,冰下排放被关闭时融化会停止,而夏季冰下排放量很高时,融化每天会达到几米。这些结果是在数值海洋模型中朝潮水冰川的水下融化更真实地表示冰下排放和海洋热强迫的第一步。我们的结果表明,冰面融化过程既复杂又非常依赖时间。

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