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Thermal Weakening, Convergent Flow, and Vertical Heat Transport in the Northeast Greenland Ice Stream Shear Margins

机译:热弱,收敛流和东北格陵兰冰流剪切边距的垂直热运输

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摘要

Ice streams are bounded by abrupt transitions in speed called shear margins. Some shear margins are fixed by subglacial topography, but others are thought to be self-organizing, evolving by thermal feedback to ice viscosity and basal drag which govern the stress balance of ice sheets. Resistive stresses (and properties governing shear-margin formation) manifest nonuniquely at the surface, motivating the use of subsurface observations to constrain ice sheet models. In this study, we use ice-penetrating radar data to evaluate three 3-D thermomechanical models of the Northeast Greenland Ice Stream, focusing on model reproductions of ice temperature (a primary control on viscosity) and subsurface velocity. Data/model agreement indicates elevated temperatures in the Northeast Greenland Ice Stream margins, with depth-averaged temperatures between 2 degrees C and 6 degrees C warmer in the southeast margin compared to ice in streaming flow, driven by vertical heat transport rather than shear heating. This work highlights complexity in ice divergence across stagnant/streaming transitions.
机译:冰流被称为剪切边距的速度突然过渡。一些剪切边缘由底透明地形固定,但其他人被认为是自组织的,通过热反馈来发展到冰粘度和基底阻力,控制冰盖的应力平衡。电阻应力(和性能控制剪切边缘形成)在表面上显现,激励使用地下观察来约束冰板模型。在这项研究中,我们使用冰川雷达数据来评估东北格陵兰冰流的三个3-D热机型,专注于冰温度的模型复制(粘度初级控制)和地下速度。数据/模型协议表明东北格陵兰冰流边缘温度高温,与垂直热传输而非剪切加热驱动,在东南边缘与冰流量相比,在东南边缘温暖的深度平均温度。这项工作突出了落地/流过渡的冰差异的复杂性。

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