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Comparing the long-term fate of a snow cave and a rigid container buried at Dome C, Antarctica

机译:比较雪洞的长期命运和埋在圆顶C,南极洲的刚性集装箱

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摘要

Ice Memory is an international project aiming at creating a global ice archive sanctuary in Antarctica. The design of a perennial subsurface storage space for the cores is a cornerstone of this project. Here, we use an ice/firn flow model to investigate possible storage solutions that would meet the specific requirements of the project. To this end, we consider two extreme cases in terms of rigidity of the facility: an ice cave excavated into the firn and a perfectly rigid container buried within it. We focus on the rate of sinking of the facility as well as on the rate of closure of the cave and the evolution of the normal stresses supported by the container. Our results show that the lifetime of a cave is highly affected by the initial density of snow in its surrounding. On the other hand, the presence of the rigid container within the domain perturbs the flow of snow, creating patches of high density in its surrounding and leading to significant normal stresses on its walls. In particular, strong stress concentrations are obtained at the container angles. These results prove that unreinforced shipping containers are unsuited for this task.
机译:冰盖是一个旨在在南极洲创建全球冰档案的国际项目。核心常年地下存储空间的设计是该项目的基石。在这里,我们使用ICE / FIRN流模型来研究可能符合项目特定要求的可能存储解决方案。为此,我们在设施的刚性方面考虑两个极端情况:挖掘到FIRN中的冰洞,埋在其中的完美刚性容器。我们专注于设施的沉没以及洞穴的闭合速率以及容器支撑的正常应力的演变。我们的研究结果表明,洞穴的一生受到周围雪初始密度的影响。另一方面,在域内的刚性容器的存在磨削雪流动,在其周围产生高密度的贴片,并导致其墙壁上的显着正常应力。特别地,在容器角度获得强应力浓度。这些结果证明了未合成的运输容器不适合此任务。

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