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Quantifying velocity response to ocean tides and calving near the terminus of Jakobshavn Isbr?, Greenland

机译:量化对海潮的速度响应并在格陵兰岛雅各布沙恩·伊斯布勒(Jacobshavn Isbr?)终点附近产犊

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Dynamic changes on Greenland outlet glaciers are a primary driver for increases in icesheet mass loss and its contribution to sea-level rise. One dramatic example of such change has been observed at Jakobshavn Isbr?, which has thinned, retreated and doubled in speed since the early 2000s. Complementary to large changes on decadal scales, we observe the glacier response on shorter timescales, driven by tidal forcing and calving events. During a 14 day period in August 2009, we documented changes in geometry and speed near the terminus. On this timescale, ice flow responds to forcing at the front from iceberg calving and ocean tides.We observe a step-increase in velocity near the terminus during a large calving event, with transient deceleration in the days following the event. A simple calving-response model explains 94–99% of variations in detrended positions at the four sites considered. During each day, variability due to tidal forcing covers 10–90% of the variability that remains after removing effects accounted for by the calving-response model. The influence of the tidal forcing on flow decays upstream with a characteristic length scale of 2 km, comparable with about two ice thicknesses.
机译:格陵兰岛出口冰川的动态变化是增加冰盖质量损失及其对海平面上升的贡献的主要驱动力。 Jakobshavn Isbr?观察到了这种变化的一个引人注目的例子,自2000年代初以来,它的速度已变薄,减小并翻了一番。与年代际尺度上的大变化相辅相成,我们在更短的时间尺度上观察到了由潮汐强迫和产犊事件驱动的冰川响应。在2009年8月的14天中,我们记录了终点附近的几何形状和速度变化。在这个时间尺度上,冰流对冰山崩塌和海潮对前部的强迫做出了响应。我们观察到在一次大崩塌事件中,总站附近的速度逐步增加,并在事件发生后的几天内出现瞬时减速。一个简单的产犊-响应模型解释了所考虑的四个地点的趋势下降位置中94-99%的变化。在每天中,潮汐强迫引起的变异性覆盖了产犊响应模型所说明的影响消除后剩下的变异性的10%至90%。潮汐强迫对水流的影响在上游以2 km的特征长度尺度衰减,相当于大约两个冰层厚度。

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