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Stronger ocean circulation and increased melting under Pine Island Glacier ice shelf

机译:松岛冰川冰架下的海洋环流增强,融化增加

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In 1994, ocean measurements near Antarctica's Pine Island Glacier showed that the ice shelf buttressing the glacier was melting rapidly1. This melting was attributed to the presence of relatively warm, deep water on the Amundsen Sea continental shelf. Heat, salt and ice budgets along with ocean modelling provided steady-state calving and melting rates2,3. Subsequent satellite observations and modelling have indicated large system imbalances, including ice-shelf thinning and more intense melting, glacier acceleration and drainage basin drawdown4-10. Here we combine our earlier data with measurements taken in 2009 to show that the temperature and volume of deep water in Pine Island Bay have increased. Ocean transport and tracer calculations near the ice shelf reveal a rise in meltwater production by about 50% since 1994. The faster melting seems to result mainly from stronger sub-ice-shelf circulation, as thinning ice has increased the gap above an underlying submarine bank on which the glacier was formerly grounded 11. We conclude that the basal melting has exceeded the increase in ice inflow, leading to the formation and enlargement of an inner cavity under the ice shelf within which sea water nearly 4 °C above freezing can now more readily access the grounding zone.
机译:1994年,南极洲松岛冰川附近的海洋测量表明,支撑冰川的冰架正在迅速融化1。这种融化归因于阿蒙森海陆架上存在相对温暖的深水。热,盐和冰的预算以及海洋模型提供了稳态产犊和融化速率2,3。随后的卫星观测和建模表明系统存在较大的不平衡,包括冰架变薄和更剧烈的融化,冰川加速和流域水位下降4-10。在这里,我们将我们的早期数据与2009年进行的测量相结合,以显示派恩岛湾深水的温度和体积有所增加。自1994年以来,冰架附近的海洋运输和示踪剂计算表明,融水的产量增加了约50%。融化速度加快似乎主要是由于较强的冰层下层环流所致,因为稀薄的冰层增加了海底下层堤坝上方的缝隙我们先前得出的结论是,冰川曾在上面扎过冰。11我们得出的结论是,基础融化已经超过了冰流入的增加,从而导致了冰架下内腔的形成和扩大,在冰腔内,比冰点高出近4°C的海水现在可以更多随时可以进入接地区域。

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