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首页> 外文期刊>Geomorphology >Decadal topographic change in the McMurdo Dry Valleys of Antarctica: Thermokarst subsidence, glacier thinning, and transfer of water storage from the cryosphere to the hydrosphere
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Decadal topographic change in the McMurdo Dry Valleys of Antarctica: Thermokarst subsidence, glacier thinning, and transfer of water storage from the cryosphere to the hydrosphere

机译:南极麦克默多干旱谷的年代际地形变化:热喀斯特陷落,冰川变薄以及储水量从冰冻圈转移到水圈

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摘要

Recent local-scale observations of glaciers, streams, and soil surfaces in the McMurdo Dry Valleys of Antarctica (MDV) have documented evidence for rapid ice loss, glacial thinning, and ground surface subsidence associated with melting of ground ice. To evaluate the extent, magnitude, and location of decadal-scale landscape change in the MDV, we collected airborne lidar elevation data in 2014-2015 and compared these data to a 2001-2002 airborne lidar campaign. This regional assessment of elevation change spans the recent acceleration of warming and melting observed by long-term meteorological and ecosystem response experiments, allowing us to assess the response of MDV surfaces to warming and potential thawing feedbacks. We find that locations of thermokarst subsidence are strongly associated with the presence of excess ground ice and with proximity to surface or shallow subsurface (active layer) water. Subsidence occurs across soil types and landforms, in low-lying, low-slope areas with impeded drainage and also high on steep valley walls. Glacier thinning is widespread and is associated with the growth of fine-scale roughness. Pond levels are rising in most closed-basin lakes in the MDV, across all microclimate zones. These observations highlight the continued importance of insolation-driven melting in the MDV. The regional melt pattern is consistent with an overall transition of water storage from the local cryosphere (glaciers, permafrost) to the hydrosphere (dosed basin lakes and ponds as well as the Ross Sea). We interpret this regional melting pattern to reflect a transition to Arctic and alpine-style, hydrologically mediated permafrost and glacial melt. (C) 2018 Published by Elsevier B.V.
机译:最近对南极麦克默多干旱谷(MDV)的冰川,溪流和土壤表面进行的局部观测表明,有证据表明快速冰流失,冰川变薄以及与地面冰融化有关的地面沉降。为了评估MDV年代际尺度景观变化的程度,幅度和位置,我们收集了2014-2015年的机载激光雷达高程数据,并将这些数据与2001-2002年的机载激光雷达战役进行了比较。这种对海拔变化的区域评估涵盖了长期的气象和生态系统响应实验所观察到的近期变暖和融化的加速过程,从而使我们能够评估MDV表面对变暖和潜在融化反馈的响应。我们发现,喀斯特地热沉陷的位置与过量冰的存在以及与地表水或浅层地下(活性层)水的存在密切相关。沉降发生在土壤类型和地貌上,在排水受限的低洼低坡地区,在陡峭的山谷壁上也很高。冰川变薄是普遍的,并且与细尺度粗糙度的增长有关。在所有小气候区域中,MDV的大多数封闭流域湖泊的池塘水位都在上升。这些观察结果突出了MDV中日晒驱动熔化的持续重要性。区域性融化模式与从本地冰冻圈(冰川,永久冻土)到水圈(定量盆地湖泊和池塘以及罗斯海)的储水总体过渡相一致。我们解释这种区域融化模式,以反映出向北极和高山式,水文介导的永久冻土和冰川融化的过渡。 (C)2018由Elsevier B.V.发布

著录项

  • 来源
    《Geomorphology》 |2018年第15期|80-97|共18页
  • 作者单位

    Colgate Univ, Dept Geol, 13 Oak Ave, Hamilton, NY 13346 USA;

    Portland State Univ, Dept Geol, Portland, OR 97201 USA;

    US Geol Survey, Cascades Volcano Observ, Vancouver, WA 98683 USA;

    Univ Houston, Dept Civil & Environm Engn, Natl Ctr Airborne Laser Mapping, Houston, TX 77004 USA;

    Univ Houston, Dept Civil & Environm Engn, Natl Ctr Airborne Laser Mapping, Houston, TX 77004 USA;

    Uppsala Univ, Dept Earth Sci, Geoctr, Villav 16, S-75236 Uppsala, Sweden;

    Univ Colorado, Dept Civil Environm & Architectural Engn, Boulder, CO 80303 USA;

    Univ New Mexico, Dept Biol, Albuquerque, NM 87131 USA;

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

    Antarctic; Permafrost; Glaciers; Lidar;

    机译:南极;多年冻土;冰川;激光雷达;

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