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首页> 外文期刊>Progress in Oceanography >Numerical study of the storm-induced circulation on the Scotian Shelf during Hurricane Juan using a nested-grid ocean model
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Numerical study of the storm-induced circulation on the Scotian Shelf during Hurricane Juan using a nested-grid ocean model

机译:嵌套网格海洋模型对胡安飓风期间斯科蒂陆架风暴诱发环流的数值研究

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摘要

A nested-grid ocean circulation modelling system is used to assess the upper ocean response of the Scotian Shelf and adjacent slope to Hurricane Juan in September 2003. The nested-grid system consists of a fine-grid inner model covering the Scotian Shelf/slope and a coarse-grid outer model covering the northwest Atlantic Ocean. The model-calculated upper ocean response to Hurricane Juan is characterized by large divergent surface currents forced by the local wind forcing under the storm, and intense near-inertial currents in the wake of the storm. The sea surface temperature (SST) cooling produced by the model is biased to the right of the storm track and agrees well with a satellite-derived analysis. Over the deep water, off the Scotian Shelf, some of the near-inertial energy input by the storm is advected eastward by the Gulf Stream away from the storm track. The hurricane also generates shelf waves that propagate equatorward with the coastline on their right. In comparison with the outer model results, the inner model captures more meso-scale structures, greater SST cooling and stronger near-inertial currents in the study region.
机译:嵌套网格海洋环流模拟系统用于评估2003年9月斯科科大陆架和邻近斜坡对胡安飓风的上层海洋响应。嵌套网格系统由覆盖了斯科舍尔大陆架/斜坡和内陆的精细网格内部模型组成。覆盖西北大西洋的粗网格外部模型。由模型计算得出的对胡安飓风的上层海洋响应的特征是,风暴下的局部风迫使巨大的地表洋流,以及风暴后强烈的近惯性流。该模型产生的海表温度(SST)冷却偏向风暴路径的右侧,与卫星衍生的分析非常吻合。在科科陆架附近的深水上,暴风雨输入的一些近乎惯性的能量被湾流向东平流,远离了暴风雨轨道。飓风还产生架子波,这些波浪在其右侧的海岸线向赤道传播。与外部模型结果相比,内部模型在研究区域捕获了更多的中尺度结构,更大的SST冷却和更强的近惯性流。

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