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首页> 外文期刊>Annals of Glaciology >Temperature distribution and thermal anomalies along a flowline of the Greenland ice sheet
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Temperature distribution and thermal anomalies along a flowline of the Greenland ice sheet

机译:沿格陵兰冰盖流线的温度分布和热异常

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Englacial and basal temperature data for the Greenland ice sheet (GrIS) are sparse and mostly limited to deep interior sites and ice streams, providing an incomplete representation of the thermal state of ice within the ablation zone. Here we present 11 temperature profiles at five sites along a 34 km east west transect of West Greenland. These profiles depict ice temperatures along a flowline and local temperature variations between closely spaced boreholes. A temperate basal layer is present in all profiles, increasing in thickness in the flow direction, where it expands from similar to 3% of ice height furthest inland to 100% at the margin. Temperate thickness growth is inconsistent with modeled heat contributions from strain heating, heat conduction, and vertical extension of the temperate layer. We suggest that basal crevassing, facilitated by water pressures at or near ice overburden pressure, is responsible for the large temperate ice thicknesses observed. High-temperature kinks at 51-85 m depth are likely remnants from the thermal influence of partially water-filled crevasses up ice sheet. Steep horizontal temperature gradients between closely grouped boreholes suggest the recent thermal influence of a moulin. These profiles demonstrate the ability of meltwater to rapidly alter ice temperatures at all depths within the ablation zone.
机译:格陵兰冰原(GrIS)的冰川和基础温度数据稀疏,并且主要限于内部较深的位置和冰流,因此无法完全表示消融区内冰的热状态。在这里,我们展示了西格陵兰东西向34公里的东西样线沿线五个地点的11个温度曲线。这些剖面图描绘了沿流线的冰温以及密集井眼之间的局部温度变化。在所有剖面中均存在一个温带基底层,在流动方向上厚度增加,在该层中,它从最内陆的冰高度的大约3%扩展到边缘的100%。温带厚度的增长与由应变加热,热传导和温带层的垂直延伸所模拟的热量贡献不一致。我们认为,在冰覆盖压力或接近冰覆盖压力的情况下,水压力促进了基础起皱,这是观察到的大温带冰厚度的原因。由于部分注水的冰裂缝向上的热影响,可能会残留51-85 m深度的高温扭结。紧密分组的井眼之间的陡峭的水平温度梯度表明红磨坊最近的热影响。这些曲线说明了融水在消融区内所有深度快速改变冰温的能力。

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