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首页> 外文期刊>Quaternary Science Reviews: The International Multidisciplinary Review Journal >Glacial retreat in the Amundsen Sea sector, West Antarctica e first cosmogenic evidence from central Pine Island Bay and the Kohler Range
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Glacial retreat in the Amundsen Sea sector, West Antarctica e first cosmogenic evidence from central Pine Island Bay and the Kohler Range

机译:西南极洲阿蒙森海地区的冰川退缩,是派恩岛湾中部和科勒山脉的第一个宇宙成因证据

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The Amundsen Sea Embayment of West Antarctica hosts one of the most rapidly changing sectors of the West Antarctic Ice Sheet. With the fastest-flowing ice streams in Antarctica, the region around Pine Island Bay is characterized by rapid ice-sheet thinning and grounding-line retreat. Published surfaceexposure data are limited to a few isolated nunataks making it difficult to assess the long-term deglacial history of the area. To address this, we correlate existing records of lateral ice-stream retreat from marine sediment cores with onshore glacial thinning in two key areas of eastern Marie Byrd Land:the Kohler Range and Pine Island Bay. Our ~(10)Be surface-exposure ages are the first from the isolated Kohler Range and show that the nunataks there became ice-free between 8.6 and 12.6 ka. This implies a minimum long-term average thinning rate of 3.3 ± 0.3 cm/yr, which is one order of magnitude lower than recent rates based on satellite data. We also present pre- to early Holocene ~(10)Be surface-exposure ages from two islands located approximately 80 km downstream of the Pine Island Glacier ice-shelf front to constrain the lateral deglacial history in the Pine Island Bay area. This study provides insight into the significance of local ice sheet variations and suggests that the post-LGM history in the Amundsen Sea sector was characterized by glacial thinning as well as lateral retreat in pre- to early Holocene times.
机译:西极南极洲的阿蒙森海巢是西极南极冰原变化最快的地区之一。随着南极洲冰河流动速度最快,松岛湾周围地区的特点是冰盖迅速变薄和地线退缩。已发布的地面暴露数据仅限于少数几个孤立的小工具,因此很难评估该地区的长期冰消历史。为了解决这个问题,我们将玛丽·伯德东部东部两个主要区域的海洋沉积物芯侧向冰流退缩的记录与陆上冰川变薄联系起来:科勒山脉和松岛湾。我们的〜(10)Be表面暴露年龄是孤立的科勒山脉中的第一个,并表明那里的尼纳塔克人在8.6和12.6 ka之间变得无冰。这意味着最低的长期平均平均变薄速率为3.3±0.3 cm / yr,这比基于卫星数据的最新速率低一个数量级。我们还介绍了全新世之前到早期〜(10)Be的地表暴露年龄,这两个岛位于Pine Island冰川冰架前缘下游约80 km,以限制Pine Island湾地区的横向冰消历史。这项研究提供了对局部冰盖变化意义的洞察力,并表明在全新世之前到早期,阿蒙森海地区LGM后的历史特征是冰川变薄以及横向退缩。

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