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Intra- and inter-annual variability in dynamic discharge from the Academy of Sciences Ice Cap, Severnaya Zemlya, Russian Arctic, and its role in modulating mass balance

机译:从科学院冰盖,Severnaya Zemlya,俄罗斯北极学院的动态排放的内部和年间变异性及其在调制质量平衡中的作用

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We determined ice velocities for the Academy of Sciences Ice Cap, Severnaya Zemlya, Russian Arctic, during November 2016-November 2017, by feature-tracking 54 pairs of Sentinel-1 synthetic-aperture radar images. Seasonal velocity variations with amplitudes up to 10% of the yearly-averaged velocity were observed. Shorter-term (<15 d) intra-annual velocity variations had average and maximum deviations from the annual mean of up to 16 and 32%, respectively. This indicates the errors that could be incurred if ice discharge values determined from a single pair of images were extrapolated to the whole year. Average ice discharge for 2016-2017 was 1.93 +/- 0.12 Gt a(-1). The difference from an estimate of similar to 1.4 Gt a(-1) for 2003-2009 was attributed to the initiation of ice stream flow in Basin BC. The total geodetic mass balance over 2012-2016 was - 1.72 +/- 0.67 Gt a(-1) (- 0.31 +/- 0.12 m w.e. a(-1)). The climatic mass balance was not significantly different from zero, at 0.21 +/- 0.68 Gt a(-1) (0.04 +/- 0.12 m w.e. a(-1)), and has remained near zero at decadal-scale for the last four decades. Therefore, the total mass balance has been controlled largely by variations in ice discharge, whose long-term changes do not appear to have responded to environmental changes but to the intrinsic characteristics of the ice cap governing tidewater glacier dynamics.
机译:2016年11月至2017年11月,我们通过跟踪54对哨兵-1合成孔径雷达图像,确定了俄罗斯北极塞韦尔纳亚-泽姆利亚科学院冰盖的冰速。观测到的季节速度变化幅度高达年平均速度的10%。短期(<15d)年内流速变化与年平均值的平均偏差和最大偏差分别高达16%和32%。这表明,如果从一对图像确定的冰流量值外推到全年,可能会产生误差。2016-2017年的平均冰流量为1.93+/-0.12 Gt a(-1)。与2003-2009年1.4 Gt a(-1)的估计值相比,这一差异归因于BC盆地冰流的开始。2012-2016年的总大地质量平衡为-1.72+/-0.67 Gt a(-1)(-0.31+/-0.12 m w.e.a(-1))。在0.21+/-0.68 Gt a(-1)(0.04+/-0.12 m w.e.a(-1))时,气候质量平衡与零没有显著差异,在过去四十年中,在十年尺度上一直保持在接近零的水平。因此,总质量平衡在很大程度上受到冰流量变化的控制,冰流量的长期变化似乎并没有对环境变化作出反应,而是对控制潮水冰川动力学的冰盖的固有特征作出反应。

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