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Dynamic Change of Totten Glacier, East Antarctica.

机译:南极东部托特冰川的动态变化。

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摘要

Totten Glacier, East Antarctica, a glacier that holds a 3.9 m sea level change equivalent, has thinned and lost mass for decades. Change in surface elevation calculated from high- resolution DEM differencing shows significant surface lowering rates concentrated in areas of fast flow, hence is probably of dynamic origin. A 26-year long ice velocity time series (1989-2015) consisting of 13 maps is developed from Landsat and interferometric synthetic aperture radar (InSAR) data. We find significant speed-up in ice velocity, especially in 2002-2007, followed by a period of slow decrease in 2010-2014. Comparing the ice discharge with surface mass balance suggests that the glacier mass balance was already negative in 1996 and became more negative into the 2000s. Grounding line mapping using differential InSAR, combined with high resolution topographies of the ice surface and ice draft, reveals a 1,500-2,300 m deep grounding zone. The grounding line extends 15 km inland along two prominent side lobes. Immediately upstream of the grounding line, there is an ice plain which is slightly grounded, only 15-50 m above hydrostatic equilibrium. At the glacier center, we detect a retreat of the grounding line up to 2.6+/-0.1 km by comparing differential InSAR data acquired 17 years apart. The retreat is asymmetrical along the two lobes, but consistently indicates a total thinning of 11.9+/-1.5 m from 1996 to 2013. On the ice plain, the glacier is prone to rapid retreat around a region about 7 km long, but inland the bed elevation rises. Sustained thinning will cause further retreat and speed up, but will not be conducive to a marine ice sheet instability. The ultimate cause of the changes is not known, but probably of oceanic origin. Comparison of the velocity time series and reanalysis sub-surface ocean temperatures indicates that Totten Glacier may be very sensitive to oceanic perturbations.
机译:南极东部的托特冰川(Totten Glacier)是一个冰川,拥有相当于3.9 m的海平面变化,几十年来它已经变薄并且失去了质量。由高分辨率DEM差计算得出的表面高程变化显示出明显的表面下降速率集中在快速流动的区域,因此可能是动态起源。根据Landsat和干涉合成孔径雷达(InSAR)数据,开发了一个26年的长冰速时间序列(1989-2015),包括13个地图。我们发现冰速明显加快,尤其是在2002-2007年,随后在2010-2014年出现缓慢下降的时期。将冰的排出量与表面质量平衡进行比较表明,冰川质量平衡在1996年已经为负,并在2000年代变得更加负。使用差分InSAR的接地线制图,结合冰面和冰层的高分辨率地形图,可得出1,500-2,300 m的深接地带。接地线沿两个突出的旁瓣向内陆延伸15公里。紧接在接地线的上游,有一个冰层,略微接地,仅在静水平衡之上15-50 m。在冰川中心,我们通过比较间隔17年获得的InSAR差分数据,检测到接地线后退了2.6 +/- 0.1 km。退缩沿两个瓣是不对称的,但始终表明从1996年到2013年间总减薄了11.9 +/- 1.5 m。在冰原上,冰川倾向于在大约7公里长的区域内迅速退缩,但内陆床高升高。持续的变薄将导致进一步的退缩并加速,但不利于海洋冰盖的不稳定。变化的最终原因尚不清楚,但可能是海洋原因。速度时间序列和再分析次表层海洋温度的比较表明,托特冰川可能对海洋扰动非常敏感。

著录项

  • 作者

    Li, Xin.;

  • 作者单位

    University of California, Irvine.;

  • 授予单位 University of California, Irvine.;
  • 学科 Geophysics.;Remote sensing.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 118 p.
  • 总页数 118
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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