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阿拉斯加肯尼科特冰川和鲁特冰川85年的冰川变化记录及精细化预测

An 85-year record of glacier change and refined projections for Kennicott and Root Glaciers, Alaska.

作者信息

Wells Albin, Tober Brandon S, Child Sarah F, Rounce David R, Loso Michael G, Hults Chad P, Truffer Martin, Holt John W, Christoffersen Michael S

机构信息

Department of Civil and Environmental Engineering, Carnegie Mellon University, Pittsburgh, PA, USA.

Cooperative Institute for Research in Environmental Sciences, University of Colorado, Boulder, CO, USA.

出版信息

Nat Commun. 2025 Aug 22;16(1):7835. doi: 10.1038/s41467-025-62962-w.

Abstract

Long-term historical records of glacier mass change are key to advancing understanding of glaciers' response to climate change and improving predictions of their future. Here, we use historical aerial photographs and new bed topography measurements to provide an 85-year record of glacier change on Kennicott and Root Glaciers in Alaska. At the glacier terminus, little change is observed in the two decades prior to 1957, followed by ongoing and accelerating mass loss with dynamically driven spatial variability. Glacier projections, constrained by these mass loss estimates, predict that Kennicott Glacier will lose 38 ± 14% to 63 ± 18% of its mass by 2100, relative to 2000, and Root Glacier will lose 38 ± 11% to 58 ± 12%, depending on the emissions scenario. These results differ by up to 22% from similar predictions made by projections calibrated from the past two decades of glacier change only. This highlights the importance of long-term glacier mass-loss records that help us better project far-reaching consequences of climate change related to sea level rise, water resources, natural hazards, climate, and culture.

摘要

长期的冰川质量变化历史记录是增进对冰川对气候变化响应的理解以及改进其未来预测的关键。在此,我们利用历史航空照片和新的床面地形测量数据,提供了阿拉斯加肯尼科特冰川和鲁特冰川85年的冰川变化记录。在冰川末端,1957年之前的二十年里几乎没有变化,随后是持续且加速的质量损失,并伴有动态驱动的空间变异性。受这些质量损失估计值约束的冰川预测表明,到2100年,相对于2000年,肯尼科特冰川将损失其质量的38±14%至63±18%,鲁特冰川将损失38±11%至58±12%,这取决于排放情景。这些结果与仅根据过去二十年冰川变化校准的预测相比,差异高达22%。这凸显了长期冰川质量损失记录的重要性,这些记录有助于我们更好地预测与海平面上升、水资源、自然灾害、气候和文化相关的气候变化的深远后果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f352/12373804/693386d62e17/41467_2025_62962_Fig1_HTML.jpg

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