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Glaciological characteristics of Institute Ice Stream using remote sensing

机译:遥感研究所冰流的冰川学特征

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We assess the ice flow of Institute Ice Stream (IIS; 81.5°S, 75°W) and the adjacent Ronne Ice Shelf using satellite images and geophysical parameters from recent continent-wide compilations. Landsat image pairs from the 1980s and 1990s are used to determine ice velocity. Peak speed is 398 ± 10 m a~(-1). Several mappings using images spanning an eleven-year period indicate this speed and the pattern of ice flow throughout the mapped portion of the stream is constant to within ± 20 m a~(-1). Combining catchment extent (141 700 km~2) with surface accumulation, mass input to IIS is 25.1 ± 2 Gt a~(-1). Mean ice thickness across the grounding line is 1177 m. Mass flux to the Ronne Ice Shelf, determined from these values and our velocity profile, is 22.7 ± 2 Gt a~(-1). Topographic mapping using photoclinometry, coupled with ice thickness and ice velocity, permits an assessment of driving force versus flow speed. This indicates wide variations in basal resistance. Despite evidence of present-day near-balance and constant speed in the ice stream trunk, a recent change in outflow is implied by folding of shelf streaklines near Korff Ice Rise. This may be a result of changing shelf thickness or erosion of Doake Ice Rumples.
机译:我们使用卫星图像和最新的全洲范围汇编的地球物理参数,评估了研究所冰流(IIS; 81.5°S,75°W)和相邻的Ronne冰架的冰流。使用1980年代和1990年代的Landsat影像对确定冰速。峰值速度为398±10 m a〜(-1)。使用跨越十一年时间段的图像的几个映射表明了这种速度,并且整个流的映射部分的冰流模式恒定在±20 m a〜(-1)以内。结合集水范围(141 700 km〜2)和地表堆积,IIS的质量输入为25.1±2 Gt a〜(-1)。整个接地线上的平均冰厚为1177 m。根据这些值和我们的速度曲线确定,到达罗讷冰架的质量通量为22.7±2 Gt a〜(-1)。使用光度法的地形图以及冰厚和冰速可以评估驱动力与流速的关系。这表明基础抵抗力的广泛变化。尽管有证据表明当今冰流干线接近平衡并且速度恒定,但由于科尔夫冰川上升附近的架子条线折叠,暗示了流出量的最新变化。这可能是由于架子厚度变化或Doake冰块腐蚀造成的。

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