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Ice-dynamic conditions of Shirase Glacier, Antarctica, inferred from ERS SAR interferometry

机译:ERS SAR干涉法推断南极Shirase冰川的冰动力学条件

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摘要

The surface velocity field of Shirase Glacier, a fast-flowing East Antarctic outlet glacier, is determined from ERS synthetic aperture radar (SAR) images by means of speckle tracking using phase correlation, a technique which matches small image kernels of two complex SAR images by maximization of the local coherence. Velocity estimates are used to calculate surface strain rates, which are then used to calculate the large-scale, vertically integrated force balance and to determine the major stress components resisting the driving stress. For the whole glacier system, the driving stress is largely balanced by the basal drag, but with contributions from lateral drag up to 15% of the driving stress at the grounding line. Longitudinal stress gradients have only local importance to the balance of forces, limited to an area of a few square kilometers near the grounding line, where they resist the driving stress. In the grounded part of the glacier, >90% of the total ice velocity is due to basal sliding. Comparison with a balance-flux distribution of the Antarctic ice sheet suggests that the glacier in the downstream part of the Shirase drainage basin is close to equilibrium, showing a slight negative imbalance.
机译:Shirase Glacier(一个快速流动的南极东部出口冰川)的表面速度场是通过使用相位相关的散斑跟踪从ERS合成孔径雷达(SAR)图像中确定的,该技术通过以下方法将两个复杂SAR图像的小图像内核匹配:最大化本地一致性。速度估算用于计算表面应变率,然后用于计算大规模的垂直积分力平衡并确定抵抗驱动应力的主要应力分量。对于整个冰川系统,驱动力在很大程度上由基础阻力平衡,但横向阻力的贡献高达接地线驱动力的15%。纵向应力梯度仅对力的平衡具有局部重要性,限于在接地线附近几平方公里的区域,在那里它们抵抗驱动应力。在冰川的接地部分,总滑冰速度的90%以上是由于基底滑动造成的。与南极冰盖的平衡通量分布比较表明,Shirase流域下游部分的冰川接近平衡,显示出轻微的负失衡。

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