首页> 外文期刊>Annals of Glaciology >The role of Pine Island Glacier ice shelf basal channels in deep-water upwelling, polynyas and ocean circulation in Pine Island Bay, Antarctica
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The role of Pine Island Glacier ice shelf basal channels in deep-water upwelling, polynyas and ocean circulation in Pine Island Bay, Antarctica

机译:松岛冰川冰架基底通道在南极松岛湾的深水上升流,波利尼亚和海洋循环中的作用

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摘要

Several hundred visible and thermal infrared satellite images of Antarctica's southeast Amundsen Sea from 1986 to 2011, combined with aerial observations in 2009, show a strong inverse relation between prominent curvilinear surface depressions and the underlying basal morphology of the outer Pine lsland Glacier ice shelf. Shipboard measurements near the calving front reveal positive temperature, salinity and current anomalies indicative of melt-laden, deep-water outflows near and above the larger channel termini. These buoyant plumes rise to the surface and are expressed as small polynyas in the sea ice and thermal signatures in the open water. The warm upwellings also trace the cyclonic surface circulation in Pine Island Bay. The satellite coverage suggests changing modes of ocean/ ice interactions, dominated by leads along the ice shelf through 1999, fast ice and polynyas from 2000 to 2007, and larger areas of open water since 2008.
机译:1986年至2011年南极洲东南部阿蒙森海的数百幅可见和热红外卫星图像,再加上2009年的空中观测,显示出明显的曲线表面凹陷与松岛外冰川冰架的基础基础形态之间的强烈反比关系。产犊前锋附近的船上测量值显示出正温度,盐度和电流异常,表明较大通道总站附近和上方的熔体深水流出。这些浮羽上升到水面,在海冰中表现为小poly虫,在开阔水域表现为热信号。温暖的上升流也追踪了松岛湾的气旋表面循环。卫星覆盖表明海洋/冰相互作用的模式正在改变,其中主要是沿冰架一直延伸到1999年的铅,从2000年到2007年的速冻冰河和多年生珊瑚,以及自2008年以来更大的开放水域。

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