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The Bering Sea : communication with the Western subarctic gyre, mesoscale activity, shelf-basin exchange, and the flow through Bering Strait

机译:白令海:与西部北极水下环流的通讯,中尺度活动,架子盆地交换以及流经白令海峡的水流

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摘要

A 1/12th-degree, pan-Arctic ice-ocean numerical model is used to better understand the circulation and exchanges in the Bering Sea. Understanding the physical oceanography of the Bering Sea is significant for the U.S. Navy due to the expected increase in ship traffic and exploration of natural resources that will likely coincide with the ongoing retreat of sea ice in the Western Arctic. This model represents a large step forward in the ability to simulate the mesoscale eddies and meanders in the Alaskan Stream and the deep Bering Sea basin, which are shown to exert a strong control on the flow into and out of the western Aleutian Island passes. Model results show that upwelling of deep Bering Sea water, which is the primary source of nutrients for important ecosystems of the Bering, Chukchi, and Beaufort seas, is enhanced by the presence of cyclonic eddies in the vicinity of canyons along the slope. High values of eddy kinetic energy in Bering and Anadyr straits help explain the areas of high biological productivity located just downstream in the Chirikov Basin and north of Bering Strait. Model results show significant horizontal and vertical shear in the flow through Bering Strait, and indicate a need for more observations of the flow structure on a continuous basis.
机译:使用1/12度的泛北极冰洋数值模型可以更好地了解白令海的环流和交换。了解白令海的自然海洋学对美国海军具有重要意义,因为预计船舶运输量和自然资源的勘探将与西部北极海冰的不断退缩相吻合。该模型代表了在模拟阿拉斯加溪流和白令海深海盆地中尺度涡流和曲折能力方面迈出的一大步,它们被显示出对流入和流出阿留申岛西部通道的水流具有强大的控制力。模型结果表明,深山白令海水的上升是白令海,楚科奇海和波弗特海重要生态系统养分的主要来源,由于沿峡谷的峡谷附近存在旋风涡,因此这种上升得到增强。白令海峡和阿纳迪尔海峡的涡动能值很高,这可以解释位于奇里科夫盆地下游和白令海峡以北的高生物生产力地区。模型结果表明,在流经白令海峡的水流中存在明显的水平和垂直剪切力,并表明需要在连续基础上更多地观察水流结构。

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    Kinney Jaclyn Clement;

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  • 年度 2011
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