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The secret life of ice sails

机译:冰帆的秘密生活

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摘要

We present the first dedicated study into the phenomenon of ice sails. These are clean ice structures that protrude from the surface of a small number of debris-covered glaciers and can grow to heights of over 25 m. We draw together what is known about them from the academic/exploration literature and then analyse imagery. We show here that ice sails can develop by one of two mechanisms, both of which require clean ice to become surrounded by debris-covered ice, where the debris layer is shallow enough for the ice beneath it to melt faster than the clean ice. Once formed, ice sails can persist for decades, in an apparently steady state, before debris layer thickening eventually causes a reversal in the relative melt rates and the ice sails decay to merge back with the surrounding glacier surface. We support our image-based analysis with a surface energy-balance model and show that it compares well with available observations from Baltoro Glacier in the Karakoram. A sensitivity analysis of the model is performed and confirms the results from our empirical study that ice sails require a relatively high evaporative heat flux and/or a relatively low sensible heat flux in order to exist.
机译:我们提出了第一个专门研究冰帆现象的研究。这些是干净的冰结构,从少量碎屑覆盖的冰川表面突出,可以生长到25 m以上的高度。我们将学术/探索文献中对它们的了解汇总在一起,然后分析图像。我们在这里显示出冰帆可以通过两种机制之一发展,这两种机制都需要干净的冰被覆盖有碎屑的冰包围,其中碎屑层足够浅,因此其下面的冰比干净的冰融化得更快。一旦形成,冰帆可以在明显稳定的状态下持续数十年,然后碎屑层增厚最终导致相对融化率发生逆转,并且冰帆衰减并与周围的冰川表面合并。我们使用表面能平衡模型来支持基于图像的分析,并表明该模型与喀喇昆仑州Baltoro冰川的可用观测结果具有很好的对比性。对该模型进行了敏感性分析,并确认了我们的经验研究结果,即冰帆需要相对较高的蒸发热通量和/或相对较低的显热通量才能存在。

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