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Evolution of Derwael Ice Rise in Dronning Maud Land, Antarctica, over the last millennia

机译:近一千年来南极德龙宁莫德土地上德瓦冰层的演变

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摘要

Ice rises situated in the ice-shelf belt around Antarctica have a spatially confined flow regime with local ice divides. Beneath the divides, ice stratigraphy often develops arches with amplitudes that record the divide's horizontal residence time and surface elevation changes. To investigate the evolution of Derwael Ice Rise, Dronning Maud Land, Antarctica, we combine radar and GPS data from three consecutive surveys, with a two-dimensional, full Stokes, thermomechanically coupled, transient ice-flow model. We find that the surface mass balance (SMB) is higher on the upwind and lower on the downwind slopes. Near the crest, the SMB is anomalously low and causes arches to form in the shallow stratigraphy, observable by radar. In deeper ice, arches are consequently imprinted by both SMB and ice rheology (Raymond effect). The data show how arch amplitudes decrease as along-ridge slope increases, emphasizing that the lateral positioning of radar cross sections is important for the arch interpretation. Using the model with three rheologies (isotropic with n=3,4.5 and anisotropic with n=3), we show that Derwael Ice Rise is close to steady state but is best explained using ice anisotropy and moderate thinning. Our preferred, albeit not unique, scenario suggests that the ice divide has existed for at least 5000 years and lowered at approximately 0.03 m a−1 over the last 3400 years. Independent of the specific thinning scenario, our modeling suggests that Derwael Ice Rise has exhibited a local flow regime at least since the Mid-Holocene.
机译:位于南极洲周围冰架带中的冰川上升具有局部冰裂的空间受限流态。在鸿沟之下,冰层地层经常形成具有一定幅度的拱形,以记录鸿沟的水平停留时间和地表高程变化。为了调查南极州德龙宁莫德土地(Dronning Maud Land)的Derwael冰层上升的演变,我们将来自三个连续勘测的雷达和GPS数据与二维,完整的斯托克斯,热机械耦合的瞬态冰流模型进行了组合。我们发现,表面质量平衡(SMB)在上风处较高,在下风处较低。在波峰附近,SMB异常低,导致在浅层地层中形成弧形,可以通过雷达观察到。因此,在更深的冰层中,SMB和冰流变学都在拱门上留下印记(雷蒙德效应)。数据显示了拱形振幅如何随着沿山脊坡度的增加而减小,强调了雷达横截面的横向定位对于拱形解释很重要。使用具有三种流变学的模型(n = 3,4.5的各向同性和n = 3的各向异性),我们显示Derwael升冰接近稳态,但最好使用冰各向异性和中等稀化来解释。尽管不是唯一的,但我们的首选方案表明,冰隔已经存在至少5000年,并且在过去3400年中降低了约0.03 m a-1。与特定的变薄情况无关,我们的模型表明,至少自中全新世以来,Derwael的冰层上升就表现出局部流动状态。

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