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Multiple-Scale Variations of Sea Ice and Ocean Circulation in the Bering Sea Using Remote Sensing Observations and Numerical Modeling

机译:白令海海冰和海洋环流的多尺度变化的遥感观测和数值模拟

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The Bering Sea is located between the Aleutian Low and Siberian High, with strong seasonal variations in the oceanic circulation and the sea ice coverage. Within such a large-scale system, the physical processes in the Bering Sea carry interannual variability. The special topography in the Bering Sea traps a strong jet along the Bering Slope, whose instability enriches the eddy activity in the region. A Regional Oceanic Modeling System (ROMS), coupled with a sea ice module, is employed to study multiple-scale variability in the sea ice and oceanic circulation in the Bering Sea for interannual, seasonal, and intra-seasonal eddy variations. The model domain covers the whole Bering Sea and a part of the Chukchi Sea and south of Aleutian Islands, with an averaged spatial resolution of 5 km. The external forcings are momentum, heat, and freshwater flux at the surface and adaptive nudging to reanalysis fields at the boundaries. The oceanic model starts in an equilibrium state from a multiple year cyclical climatology run, and then it is integrated from years 1990 through 2004. The 15 year simulation is analyzed and assessed against the observational data. The model accurately reproduces the seasonal and interannual variations in the sea ice coverage compared with the satellite-observed sea ice data from the National Snow and Ice Data Center (NSIDC). Sea surface temperature and eddy kinetic energy patterns from the ROMS agree with satellite remote sensing data. The transportation through the Bering Strait is also comparable with the estimate of mooring data. The mechanism for seasonal and interannual variation in the Bering Sea is connected to the Siberia-Aleutian index. Eddy variation along the Bering Slope is discussed. The model also simulates polynya generation and evolution around the St. Lawrence Island.
机译:白令海位于阿留申低地和西伯利亚高地之间,海洋环流和海冰覆盖率具有强烈的季节性变化。在如此大规模的系统中,白令海的物理过程具有年际变化。白令海的特殊地形沿白令坡形成了强烈的急流,其不稳定状态丰富了该地区的涡流活动。区域海洋建模系统(ROMS)结合海冰模块,用于研究白令海海冰和海洋环流的年际,季节和季节内涡旋变化的多尺度变化。模型域覆盖整个白令海,楚科奇海的一部分以及阿留申群岛的南部,平均空间分辨率为5 km。外部强迫是地表的动量,热量和淡水通量,以及在边界处自适应微调再分析场。海洋模型从多年的周期性气候学运行开始处于平衡状态,然后从1990年到2004年进行了整合。对15年的模拟进行了分析,并根据观测数据进行了评估。与来自国家冰雪数据中心(NSIDC)的卫星观测海冰数据相比,该模型准确地再现了海冰覆盖范围的季节性和年际变化。 ROMS的海面温度和涡动能模式与卫星遥感数据一致。通过白令海峡的运输也可以与系泊数据的估计相媲美。白令海季节性和年际变化的机制与西伯利亚-阿留申指数相关。讨论了沿白令坡的涡流变化。该模型还模拟了圣劳伦斯岛周围的多年生植物的演化。

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