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Drift-dependent changes in iceberg size-frequency distributions

机译:冰山大小-频率分布的漂移相关变化

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摘要

Although the size-frequency distributions of icebergs can provide insight into how they disintegrate, our understanding of this process is incomplete. Fundamentally, there is a discrepancy between iceberg power-law size-frequency distributions observed at glacial calving fronts and lognormal size-frequency distributions observed globally within open waters that remains unexplained. Here we use passive seismic monitoring to examine mechanisms of iceberg disintegration as a function of drift. Our results indicate that the shift in the size-frequency distribution of iceberg sizes observed is a product of fracture-driven iceberg disintegration and dimensional reductions through melting. We suggest that changes in the characteristic size-frequency scaling of icebergs can be explained by the emergence of a dominant set of driving processes of iceberg degradation towards the open ocean. Consequently, the size-frequency distribution required to model iceberg distributions accurately must vary according to distance from the calving front.
机译:尽管冰山的大小频率分布可以提供有关它们如何分解的见解,但我们对这一过程的理解还不完整。从根本上讲,在冰崩产卵锋线处观察到的冰山幂律大小-频率分布与在开阔水域中总体上观察到的对数正态大小-频率分布之间存在差异,这尚无法解释。在这里,我们使用被动地震监测来检查冰山崩解机制与漂移的关系。我们的结果表明,观察到的冰山大小的大小频率分布的变化是裂缝驱动的冰山崩解和融化导致尺寸减小的产物。我们认为,冰山特征大小-频率尺度变化的变化可以解释为冰山退化向开放海洋的主要驱动过程的出现。因此,精确建模冰山分布所需的尺寸-频率分布必须根据距产犊前线的距离而变化。

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