Tabone Ilaria, Robinson Alexander, Montoya Marisa, Alvarez-Solas Jorge
Departamento de Geofísica, Universidad de Concepción, Concepción, Chile.
Departamento de Física de la Tierra y Astrofísica, Facultad de Ciencias Físicas, Universidad Complutense de Madrid, Madrid, Spain.
Nat Commun. 2024 Jul 31;15(1):6434. doi: 10.1038/s41467-024-50772-5.
Ice-core records from the interior of the Greenland ice sheet suggest widespread thinning during the Holocene. However, the recurring underestimation of this thinning in numerical models raises concerns about both the veracity of such reconstructions and the reliability of glaciological models. Recent work suggests the 8000-year-old Northeast Greenland Ice Stream (NEGIS), including a now-extinct northern tributary, may have been an early influence on Greenland ice-sheet dynamics. Yet, the inaccurate reproduction of NEGIS-like dynamics in most models hampers investigation of whether this feature played a role in Holocene ice-sheet thinning. Here we show that grounding-line retreat in northeast Greenland triggers elevation changes at the northern summit via ice-dynamic effects modulated by the paleo NEGIS system. In our simulations, fast ice-stream flow caused by transiently imposed reduced basal shear stress following the northeast retreat explains 55% ( ± 18%) of the estimated ice thinning, showing that ice-stream dynamics is one of the main drivers of the NGRIP Holocene surface elevation drop. Our findings show that the ice-flow in northeast Greenland plays a large role in ice-surface elevation changes in central Greenland.
来自格陵兰冰盖内部的冰芯记录表明,全新世期间冰盖普遍变薄。然而,数值模型中反复出现的对这种变薄程度的低估,引发了人们对这类重建准确性以及冰川学模型可靠性的担忧。最近的研究表明,有着8000年历史的东北格陵兰冰流(NEGIS),包括一条现已消失的北部支流,可能对格陵兰冰盖动力学产生了早期影响。然而,大多数模型对类似NEGIS动力学的不准确再现,阻碍了对这一特征是否在全新世冰盖变薄过程中发挥作用的研究。在此,我们表明,格陵兰东北部的接地线后退通过古NEGIS系统调节的冰动力效应,引发了北极峰的海拔变化。在我们的模拟中,随着东北部后退,因瞬时施加的基底剪应力减小而导致的快速冰流,解释了估计的冰变薄的55%(±18%),这表明冰流动力学是北格陵兰岛全新世表面海拔下降的主要驱动因素之一。我们的研究结果表明,格陵兰东北部的冰流在格陵兰中部冰面海拔变化中起着很大作用。