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Comparison between nested grids and unstructured grids for a high-resolution wave forecasting system in the western Mediterranean sea

机译:地中海西部高分辨率海浪预报系统中嵌套网格与非结构网格的比较

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摘要

Traditionally wave modelling uses a downscaling process by means of successive nested grids to obtain high-resolution wave fields near the coast. This supposes an uncertain error due to internal boundary conditions and a long computational time. Unstructured grids avoid multiple meshes and thus the problem of internal boundary conditions. In the present study high-resolution wave simulations are analysed for a full year where high-resolution meteorological models were available in the Catalan coast. This coastal case presents sharp gradients in bathymetry and orography and therefore correspondingly sharp variations in the wind and wave fields. Simulations with SWAN v.4091A using a traditional nested sequence and a regional unstructured grid have been compared. Also a local unstructured grid nested in an operational forecast system is included in the analysis. The obtained simulations are compared to wave observations from buoys near the coast; almost no differences are found between the unstructured grids and the regular grids. Simultaneously, tests have been carried out in order to analyse the computational time required for each of the alternatives, showing a decrease to less than half the time when working with regional unstructured grids and maintaining the forecast accuracy and coastal resolution with respect to the downscaling system.
机译:传统上,波浪建模通过连续的嵌套网格使用缩小过程来获得海岸附近的高分辨率波场。假定由于内部边界条件和较长的计算时间而导致不确定的误差。非结构化网格避免了多个网格,因此避免了内部边界条件的问题。在本研究中,对高分辨率波浪模拟进行了为期一年的分析,其中加泰罗尼亚海岸可使用高分辨率气象模型。这种沿海情况在测深和地形方面呈现出陡峭的梯度,因此在风场和波浪场中也呈现出相应的急剧变化。比较了使用传统嵌套序列和区域非结构化网格的SWAN v.4091A进行的仿真。分析中还包括嵌套在运营预测系统中的本地非结构化网格。将获得的模拟结果与海岸附近浮标的波浪观测结果进行比较;在非结构化网格和常规网格之间几乎没有发现差异。同时,为了分析每种替代方案所需的计算时间,已经进行了测试,结果表明,使用区域非结构化网格并相对于缩小规模的系统保持预测精度和海岸分辨率时,该时间减少到不到一半。

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  • 来源
    《Journal of operational oceanography》 |2017年第1期|45-58|共14页
  • 作者单位

    Polytech Univ Catalonia UPC, Lab Engn Maritima LIM UPC, Jordi Girona 1-3,Ed D1, Barcelona 08034, Spain;

    Polytech Univ Catalonia UPC, Lab Engn Maritima LIM UPC, Jordi Girona 1-3,Ed D1, Barcelona 08034, Spain;

    Polytech Univ Catalonia UPC, Lab Engn Maritima LIM UPC, Jordi Girona 1-3,Ed D1, Barcelona 08034, Spain;

    Polytech Univ Catalonia UPC, Lab Engn Maritima LIM UPC, Jordi Girona 1-3,Ed D1, Barcelona 08034, Spain;

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