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Sediment transport drives tidewater glacier periodicity

机译:泥沙输送驱动潮水冰川的周期性

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摘要

Most of Earth’s glaciers are retreating, but some tidewater glaciers are advancing despite increasing temperatures and contrary to their neighbors. This can be explained by the coupling of ice and sediment dynamics: a shoal forms at the glacier terminus, reducing ice discharge and causing advance towards an unstable configuration followed by abrupt retreat, in a process known as the tidewater glacier cycle. Here we use a numerical model calibrated with observations to show that interactions between ice flow, glacial erosion, and sediment transport drive these cycles, which occur independent of climate variations. Water availability controls cycle period and amplitude, and enhanced melt from future warming could trigger advance even in glaciers that are steady or retreating, complicating interpretations of glacier response to climate change. The resulting shifts in sediment and meltwater delivery from changes in glacier configuration may impact interpretations of marine sediments, fjord geochemistry, and marine ecosystems.
机译:尽管温度升高且与邻国相反,但地球上大多数冰川都在后退,但一些潮水冰川正在前进。这可以通过冰与沉积物动力学的耦合来解释:在冰川终点形成浅滩,减少了冰的排放,并导致了向着不稳定形态前进,然后突然退缩的过程,即所谓的潮水冰川循环。在这里,我们使用经观测校准的数值模型来表明,冰流,冰川侵蚀和沉积物运输之间的相互作用驱动了这些循环,而这些循环的发生与气候变化无关。水的可利用性控制着周期和振幅,而且即使在稳定或后退的冰川中,未来变暖所引起的融化增强也可能触发前进,这使得对冰川对气候变化反应的解释变得复杂。冰川构造变化导致的沉积物和融水输送的变化可能会影响海洋沉积物,峡湾地球化学和海洋生态系统的解释。

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