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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Circulation and thermal structure in Lake Huron and Georgian Bay: Application of a nested-grid hydrodynamic model
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Circulation and thermal structure in Lake Huron and Georgian Bay: Application of a nested-grid hydrodynamic model

机译:休伦湖和乔治亚湾的环流和热力结构:嵌套网格水动力模型的应用

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摘要

A nested-grid hydrodynamic modelling system is used to study circulation and temperature distributions in Lake Huron (LH) and adjacent areas. This nested system is based on the three-dimensional, primitive-equation z-level ocean model. The nested system consists of two sub-components: a coarse-resolution outer model covering LH and Georgian Bay (GB) with a horizontal resolution of roughly 2.5 km, and the fine-resolution inner model covering eastern LH and northwestern GB with a horizontal resolution of roughly 900 m. Both the outer and inner models have 30 z-levels in the vertical. To assess the model performance, we simulate the three-dimensional circulation and temperature distributions of LH and GB in 1974-1975 and compare the model results with observations made in the lake. We demonstrate that outer model of the nested system simulates reasonably well the large-scale circulation and seasonal evolution of thermal stratifications in LH and GB, and the inner model produces reasonably well the three-dimensional flow and thermal structure over the coastal boundary layer close to the eastern shore of the lake. (c) 2006 Elsevier Ltd. All rights reserved.
机译:嵌套网格水动力模型系统用于研究休伦湖(LH)和附近地区的环流和温度分布。此嵌套系统基于三维原始方程式z级海洋模型。嵌套系统由两个子组件组成:覆盖LH和乔治亚湾(GB)的粗分辨率外部模型,水平分辨率大约为2.5 km,以及覆盖东部LH和西北GB的细分辨率内部模型,水平分辨率大约900 m外部和内部模型在垂直方向上均具有30个z层。为了评估模型的性能,我们模拟了1974-1975年LH和GB的三维循环和温度分布,并将模型结果与在湖泊中的观测结果进行了比较。我们证明,嵌套系统的外部模型可以很好地模拟LH和GB中热分层的大规模循环和季节性演变,而内部模型可以很好地模拟靠近边界的沿海边界层的三维流动和热结构。湖的东岸。 (c)2006 Elsevier Ltd.保留所有权利。

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