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Temporally stable surface mass balance asymmetry across an ice rise derived from radar internal reflection horizons through inverse modeling

机译:通过反向建模越雷达内反射视线的云层越来越稳定的表面质量平衡不对称

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Ice rises are locally grounded parts of Antarctic ice shelves that play an important role in regulating ice flow from the continent towards the ocean. Because they protrude out of the otherwise horizontal ice shelves, ice rises induce an orographic uplift of the atmospheric flow, resulting in an asymmetric distribution of the surface mass balance (SMB). Here, we combine younger and older internal reflection horizons (IRHs) from radar to quantify this distribution in time and space across Derwael Ice Rise (DIR), Dronning Maud Land, Antarctica. We employ two methods depending on the age of the IRHs, i.e. the shallow layer approximation for the younger IRHs near the surface and an optimization technique based on an ice flow model for the older IRHs. We identify an SMB ratio of 2.5 between the flanks and the ice divide with the SMB ranging between 300 and 750 kg m(-2) a(-1). The SMB maximum is located on the upwind side, similar to 4 km offset to today's topographic divide. The large-scale asymmetry is consistently observed in time until 1966. The SMB from older IRHs is less-well constrained, but the asymmetry has likely persisted for >ka, indicating that DIR has been a stable features over long time spans.
机译:冰上升起是南极冰货架的局部接地部分,在调节大陆的冰流向海洋中发挥着重要作用。因为它们从其他水平冰架中突出,因此冰升诱导大气流动的地形隆起,导致表面质量平衡的不对称分布(SMB)。在这里,我们将年轻人和较旧的内部反射视野(IRHS)与雷达相结合来量化Derwael Ice崛起(DIR)的时间和空间的这种分布,德拉克陆运南极洲。我们采用两种方法,根据IRHS的年龄,即基于IRHS冰流模型的表面附近的较年轻IRH的浅层近似。我们识别侧翼和冰之间的SMB比例为2.5,并且冰划线与300至750kg m(-2)a(-1)之间的SMB。 SMB最大位于上冲程侧,类似于4公里的偏移到今天的地形鸿沟。大规模不对称在1966年至1966年之前始终观察到。来自较旧的IRHS的SMB是较少的受约束力,但不对称可能持续存在> KA,表明DIR在长期跨越稳定的功能。

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