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Hydrothermal combination and geometry control the spatial and temporal rhythm of glacier flow

机译:水热组合和几何形状控制冰川流动的空间和时间节奏

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摘要

The dynamic response of glacier to atmospheric change has varied both spatially and temporally. While some of this variability is likely related to regional climate signals, the geometry of this particular glacier also appears to be important. In this study, we investigated the hydrothermal conditions and geometric controls on the temporal and spatial evolution of Baishui River Glacier No.l 's velocity from 2012 to 2019. To do this, we combined field investigations and remote sensing observations to measure the velocity of the glacier, and factors controlling this velocity. Annual changes showed that, from 2012 to 2019, the Baishui River Glacier No. 1 experienced continuous shrinkage, accompanied by decreasing ice velocities. Seasonal changes showed that the glacier velocity during the monsoon period was significantly higher than during the non-monsoon period. Spatially, the glacier's dynamic variability decreased toward its terminus, but increased toward the upper reaches of the glacier, along a longitudinal axis. We would suggest that the interannual velocity variation of Baishui River Glacier No.l corresponded to thinning of the glacier, which in turn affected its gravitational force. Given that surface melt-induced basal lubrication, basal friction controlled by freezing rate, and dynamic thickening can alter seasonal patterns of movement, these variations may be important for understanding the seasonal evolution of this, and other glaciers. Our results further indicated that glacier width, slope, surface meltwater and crevasses were important constraints on any spatial movement patterns.
机译:冰川到大气变化的动态响应在空间和时间内变化。虽然这种可变性可能与区域气候信号有关,但这种特殊冰川的几何形状也很重要。在这项研究中,我们研究了2012年至2019年苍水河冰川速度的时间和空间演变的水热条件和几何控制。为此,我们将现场调查和遥感观察组合起来测量速度冰川和控制这种速度的因素。年度变化表明,从2012年到2019年,Baishui河冰川1号经历了连续收缩,伴随着冰速度。季节性变化表明,季风期间的冰川速度明显高于非季风期间。在空间上,冰川的动态可变性朝向其末端降低,但沿着纵向轴线朝向冰川的上游增加。我们建议,Baishui河冰川No.L的续航速度变化对应于冰川的变薄,从而影响其引力力。鉴于该表面熔化诱导的基础润滑,通过冷冻速率控制的基础摩擦力,动态增厚可以改变季节性的运动模式,这些变化可能对理解这一季节性演变和其他冰川来说很重要。我们的结果进一步表明,冰川宽度,坡度,表面熔融水和裂隙对任何空间运动模式都是重要的限制。

著录项

  • 来源
    《Science of the total environment》 |2021年第15期|144315.1-144315.13|共13页
  • 作者单位

    MOE Key Laboratory of West China's Environmental System College of Earth and Environmental Sciences Lanzhou University Lanzhou 730000 China Yulong Snow Mountain Glacier and Environment Observation and Research Station/State Key Laboratory of Cryospheric Sciences Northwest Institute of Eco-Environment and Resources ChineseAcademy of Sciences Lanzhou 730000 China;

    MOE Key Laboratory of West China's Environmental System College of Earth and Environmental Sciences Lanzhou University Lanzhou 730000 China;

    MOE Key Laboratory of West China's Environmental System College of Earth and Environmental Sciences Lanzhou University Lanzhou 730000 China;

    MOE Key Laboratory of West China's Environmental System College of Earth and Environmental Sciences Lanzhou University Lanzhou 730000 China;

    Yulong Snow Mountain Glacier and Environment Observation and Research Station/State Key Laboratory of Cryospheric Sciences Northwest Institute of Eco-Environment and Resources ChineseAcademy of Sciences Lanzhou 730000 China;

    Yulong Snow Mountain Glacier and Environment Observation and Research Station/State Key Laboratory of Cryospheric Sciences Northwest Institute of Eco-Environment and Resources ChineseAcademy of Sciences Lanzhou 730000 China;

    College of Geography and Environment Science Northwest Normal University Lanzhou 730070 China;

    Gansu Academy of Eco-environment Sciences Lanzhou 730000 China;

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

    Baishui River Glacier No.l; Glacier velocity; Hydrothermal conditions; Glacier geometry;

    机译:Baishui河冰川号码;冰川速度;水热条件;冰川几何形状;

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