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Grounding Line Retreat of Denman Glacier, East Antarctica, Measured With COSMO-SkyMed Radar Interferometry Data

机译:丹曼冰川的接地线撤退,东南南极洲,用Cosmo-Skymed Radar干涉测量数据测量

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摘要

Denman Glacier, East Antarctica, holds an ice volume equivalent to a 1.5 m rise in global sea level. Using satellite radar interferometry from the COSMO-SkyMed constellation, we detect a 5.4 0.3 km grounding line retreat between 1996 and 2017-2018. A novel reconstruction of the glacier bed topography indicates that the retreat proceeds on the western flank along a previously unknown 5 km wide, 1,800 m deep trough, deepening to 3,400 m below sea level. On the eastern flank, the grounding line is stabilized by a 10 km wide ridge. At tidal frequencies, the grounding line extends over a several kilometer-wide grounding zone, enabling warm ocean water to melt ice at critical locations for glacier stability. If warm, modified Circumpolar Deep Water reaches the sub-ice-shelf cavity and continues to melt ice at a rate exceeding balance conditions, the potential exists for Denman Glacier to retreat irreversibly into the deepest, marine-based basin in Antarctica.
机译:丹曼冰川东南极洲持有相当于全球海平面1.5米的冰块。 使用卫星雷达干涉测量法从COSMO-SKEDMES MOSTLELOME中检测到1996年至2017 - 2018年间的5.4 0.3公里的接地线撤退。 一部小型重建冰川床地形表明,沿着西部侧翼沿前未知5公里宽,1800米深槽,深化为3,400米以下的海平面。 在东侧侧翼,接地线通过宽脊稳定。 在潮汐频率下,接地线延伸在几公里宽的接地区上,使温暖的海水能够在冰川稳定性的关键位置融化冰。 如果温暖,改性的循环深水达到亚冰储腔,并继续以超过平衡条件的速率融化冰,丹曼冰川的潜力不可逆转地撤退到南极洲最深的海洋为基础的盆地。

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