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首页> 外文期刊>Journal of Physical Oceanography >The Impact of Overturning and Horizontal Circulation in Pine Island Trough on Ice Shelf Melt in the Eastern Amundsen Sea
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The Impact of Overturning and Horizontal Circulation in Pine Island Trough on Ice Shelf Melt in the Eastern Amundsen Sea

机译:松岛海槽翻转和水平环流对东部阿蒙森海冰架融化的影响

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摘要

The ice shelves around the Amundsen Sea are rapidly melting as a result of the circulation of relatively warm ocean water into their cavities. However, little is known about the processes that determine the variability of this circulation. Here we use an ocean circulation model to diagnose the relative importance of horizontal and vertical (overturning) circulation within Pine Island Trough, leading to Pine Island and Thwaites ice shelves. We show that melt rates and southward Circumpolar Deep Water (CDW) transports covary over large parts of the continental shelf at interannual to decadal time scales. The dominant external forcing mechanism for this variability is Ekman pumping and suction on the continental shelf and at the shelf break, in agreement with previous studies. At the continental shelf break, the southward transport of CDW and heat is predominantly barotropic. Farther south within Pine Island Trough, northward and southward barotropic heat transports largely cancel, and the majority of the net southward temperature transport is facilitated by baroclinic and overturning circulations. The overturning circulation is related to water mass transformation and buoyancy gain on the shelf that is primarily facilitated by freshwater input from basal melting.
机译:由于相对温暖的海水进入其腔体,阿蒙森海周围的冰架正在迅速融化。但是,对于确定这种循环的可变性的过程知之甚少。在这里,我们使用海洋环流模型来诊断松岛海槽内水平和垂直(翻转)环流的相对重要性,从而导致松岛和斯威特斯冰架。我们显示,融化率和南极的极地深水(CDW)在每年的年代际到十年的时间尺度上,在大陆架的大部分地区输送了子宫颈。与以前的研究一致,这种变化的主要外部强迫机制是在大陆架和架子断裂处的埃克曼抽水和吸力。在大陆架断裂处,CDW和热量向南的运输主要是正压的。在松岛海槽内更南边,向北和向南的正压传热在很大程度上被抵消了,斜压和倾覆环流促进了南向净净温度的大部分传递。倾覆环流与架子上的水质转化和浮力增加有关,这主要是由于基础融化产生的淡水输入而促进的。

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