>Marine‐terminating outlet glaciers of the Greenland Ice Sheet make significant contributions to global sea level rise, yet th'/> Physical Conditions of Fast Glacier Flow: 1. Measurements From Boreholes Drilled to the Bed of Store Glacier, West Greenland
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Physical Conditions of Fast Glacier Flow: 1. Measurements From Boreholes Drilled to the Bed of Store Glacier, West Greenland

机译:快速冰川流动的物理条件:1。从西格陵兰州钻孔钻孔钻孔的钻孔测量

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摘要

>Marine‐terminating outlet glaciers of the Greenland Ice Sheet make significant contributions to global sea level rise, yet the conditions that facilitate their fast flow remain poorly constrained owing to a paucity of data. We drilled and instrumented seven boreholes on Store Glacier, Greenland, to monitor subglacial water pressure, temperature, electrical conductivity, and turbidity along with englacial ice temperature and deformation. These observations were supplemented by surface velocity and meteorological measurements to gain insight into the conditions and mechanisms of fast glacier flow. Located 30?km from the calving front, each borehole drained rapidly on attaining ~600?m depth indicating a direct connection with an active subglacial hydrological system. Persistently high subglacial water pressures indicate low effective pressure (180–280?kPa), with small‐amplitude variations correlated with notable peaks in surface velocity driven by the diurnal melt cycle and longer periods of melt and rainfall. The englacial deformation profile determined from borehole tilt measurements indicates that 63–71% of total ice motion occurred at the bed, with the remaining 29–37% predominantly attributed to enhanced deformation in the lowermost 50–100?m of the ice column. We interpret this lowermost 100?m to be formed of warmer, pre‐Holocene ice overlying a thin (0–8?m) layer of temperate basal ice. Our observations are consistent with a spatially extensive and persistently inefficient subglacial drainage system that we hypothesize comprises drainage both at the ice‐sediment interface and through subglacial sediments. This configuration has similarities to that interpreted beneath dynamically analogous Antarctic ice streams, Alaskan tidewater glaciers, and glaciers in surge.
机译:

格陵兰冰盖的海洋终端出口冰川对全球海平面上升作出重大贡献,但是由于数据的缺乏,促进其快速流动的条件仍然受到严重的限制。我们在格陵兰山冰川钻探和仪器钻探七个钻孔,以监测子污染水压,温度,导电性和浊度以及enylacial冰温度和变形。这些观察结果通过表面速度和气象测量来补充,以了解快速冰川流动的条件和机制。距离Calcing Front 30 km,每个钻孔在达到〜600Ωm深度时迅速排出,指示与有源底透明水文系统直接连接。持续高的底纤维水压力表示低有效压力(180-280?KPA),小幅度变化与由昼夜熔体循环和更长的熔体和降雨量的表面速度引起的表面速度的显着峰值相关。从钻孔倾斜测量中确定的enjlacial变形曲线表明,床上发生63-71%的总冰运动,其余29-37%主要归因于冰柱的最低50-100μm的增强变形。我们将该下最低100°的覆盖(0-8μm)温带基底冰层覆盖的温暖,预全烯冰覆盖。我们的观察结果与我们假设的空间广泛且持续低效的底纤维引流系统,包括在冰沉积物界面和底纤维沉积物中引流。这种配置与动态类似的南极冰流,阿拉斯加潮水冰川和浪涌的冰川有相似之处。

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  • 作者单位

    Centre for Glaciology Department of Geography and Earth SciencesAberystwyth UniversityAberystwyth UK;

    Centre for Glaciology Department of Geography and Earth SciencesAberystwyth UniversityAberystwyth UK;

    Scott Polar Research InstituteCambridge UniversityCambridge UK;

    Scott Polar Research InstituteCambridge UniversityCambridge UK;

    Helmholtz Centre for Polar and Marine ResearchAlfred Wegener InstituteBremerhaven Germany;

    Scott Polar Research InstituteCambridge UniversityCambridge UK;

    Glaciology and Climate Geological Survey of Denmark and GreenlandCopenhagen Denmark;

    Centre for Arctic Gas Hydrate Environment and Climate Department of GeologyArctic University of NorwayTroms? Norway;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 TP79:P3;
  • 关键词

    Greenland; ice sheet; hydrology; dynamics; borehole; sediment;

    机译:格陵兰;冰盖;水文;动态;钻孔;沉积物;

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