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Episodic propagation of a rift on the Amery Ice Shelf, East Antarctica

机译:南极东部埃默里冰架上的裂谷的偶发传播

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摘要

We investigate ice shelf rift propagation using a combination of GPS and seismic measurements near the tip of an active rift in the Amery Ice Shelf. These measurements reveal that propagation occurs in episodic bursts, which were identified based on swarms of seismicity accompanied by rapid rift widening. The bursts last approximately 4 hours and are separated by 10–24 days. In between bursts, the rift widens at a rate comparable to that of ice shelf spreading. Comparison of automatic weather station data and tidal amplitudes show that the propagation bursts are not directly triggered by winds or tides, suggesting that rift propagation is driven by the background glaciological stress in the ice shelf. We show that the ice debris that partly fills the rift may play a role in controlling the rate of propagation.
机译:我们通过结合使用GPS和地震测量技术在Amery冰架中一个活跃裂谷尖端附近调查冰架裂谷传播。这些测量结果表明,传播是在突发性爆发中发生的,而突发性爆发是根据地震群伴随快速裂谷扩大而确定的。突发持续约4个小时,间隔10-24天。在两次爆发之间,裂谷以与冰架扩张相当的速度扩大。自动气象站数据和潮汐振幅的比较表明,传播爆发不是直接由风或潮汐触发的,这表明裂谷的传播是由冰架上的背景冰川压力驱动的。我们表明,部分充满裂谷的冰屑可能在控制繁殖速率中起作用。

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