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首页> 外文期刊>Annals of Glaciology >Subglacial bathymetry and sediment layer distribution beneath the Pine Island Glacier ice shelf, West Antarctica, modeled using aerogravity and autonomous underwater vehicle data
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Subglacial bathymetry and sediment layer distribution beneath the Pine Island Glacier ice shelf, West Antarctica, modeled using aerogravity and autonomous underwater vehicle data

机译:南极洲西南部松岛冰川冰架下的冰下测深和沉积物层分布,利用重力和水下自动驾驶数据建模

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Pine Island Glacier (PIG), West Antarctica, has been experiencing acceleration in its flow speed and mass loss for nearly two decades, driven in part by an increase in the delivery of relatively warm Circumpolar DeepWater (CDW). However, at present, the configuration of the sub-ice-shelf cavity and bed conditions beneath the PIG ice shelf that dictate such oceanic influences remain poorly understood. Here, we use aerogravity data and ocean bottom depths measured by an autonomous underwater vehicle (AUV) to model the bathymetry and sediment layer thickness beneath the PIG ice shelf. Results reveal that the deep basins, previously found by AUVon both landward and seaward sides of a submarine ridge, extend substantially to the north and south. The water column thickness of the basins reaches 400–550m on the landward side of the ridge and 500–600m on the seaward side. The sediment layer covers the whole expanse of the seabed beneath the ice shelf, and the thickness is in the range ~200–1000 m. The thinnest sediments (<200 m) are found on the seaward slope of the submarine ridge, suggesting that erosion by advancing ice may have been concentrated in the lee of the topographic high.
机译:近二十年来,南极洲的松岛冰川(PIG)一直在加速其流速和质量损失,部分原因是相对温暖的圆极深水(CDW)的输送量增加。然而,目前,对指示这种海洋影响的PIG冰架下方的子冰架腔的构造和床的条件仍然知之甚少。在这里,我们使用自动水下航行器(AUV)测得的重力数据和海底深度来模拟PIG冰架下方的测深和沉积物厚度。结果表明,AUV先前在海底山脊的陆侧和海侧发现的深层盆地基本上向北和向南延伸。盆地的水柱厚度在山脊的陆侧为400-550m,在海侧为500-600m。沉积物层覆盖了冰架下方海床的整个广阔区域,其厚度在〜200–1000 m范围内。在海底山脊的海面斜坡上发现了最薄的沉积物(<200 m),这表明前进的冰层侵蚀可能集中在地形高处的背风处。

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