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首页> 外文期刊>The Cryosphere Discussions >The internal structure of the Brunt Ice Shelf from ice-penetrating radar analysis and implications for ice shelf fracture
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The internal structure of the Brunt Ice Shelf from ice-penetrating radar analysis and implications for ice shelf fracture

机译:穿冰雷达分析的布鲁特冰架内部结构及其对冰架破裂的影响

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The rate and direction of rift propagation through ice shelves depend on both the stress field and the heterogeneity (or otherwise) of the physical properties of the ice. The Brunt Ice Shelf in Antarctica has recently developed new rifts, which are being actively monitored as they lengthen and interact with the internal structure of the ice shelf. Here we present the results of a ground-penetrating radar survey of the Brunt Ice Shelf aimed at understanding variations in the internal structure. We find that there are flow bands composed mostly of thick (ca.?250?m) meteoric ice interspersed with thinner (ca.?150?m) sections of ice shelf that have a large proportion of sea ice and seawater-saturated firn. Therefore the ice shelf is, in essence, a series of ice tongues cemented together with ice mélange. The changes in structure are related both to the thickness and flow speed of ice at the grounding line and to subsequent processes of firn accumulation and brine infiltration as the ice shelf flows towards the calving front. It is shown that rifts propagating through the Brunt Ice Shelf preferentially skirt the edges of blocks of meteoric ice and slow their rate of propagation when forced by the stress field to break through them, in contrast to the situation on other ice shelves where rift propagation speeds up in meteoric ice.
机译:通过冰架的裂谷传播的速度和方向取决于应力场和冰的物理特性的不均质性(或其他)。南极洲的布鲁特冰架最近开发了新的裂口,随着裂口加长并与冰架的内部结构相互作用,这些裂口正在受到积极监控。在这里,我们介绍了对布鲁特冰架进行的透地雷达调查的结果,旨在了解内部结构的变化。我们发现存在一些流动带,这些流动带主要由厚的(约250?m)流星冰散布着较薄的(约150?m)冰架段组成,这些部分的海冰和海水饱和度较高。因此,冰架本质上是一系列与冰混杂在一起的冰舌。结构的变化与接地线处冰的厚度和流速有关,以及与冰架向产犊锋面流动时的鱼骨堆积和盐水渗透的后续过程有关。结果表明,与其他裂谷传播速度较快的冰架相比,通过布伦特冰架传播的裂谷优先绕过冰块边缘并在应力场迫使其破裂时减慢其传播速度。在流冰中。

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