边界场精度对高分辨率海岸波模拟的影响

J-V Bjorkqvist, L. Tuomi, H. Pettersson, C. Fortelius, K. Tikka, K. Kahma
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引用次数: 4

摘要

芬兰湾的赫尔辛基沿海地区有复杂的海岸线和水深测量,这使得波浪场的建模特别具有挑战性。经验表明,这些类型的区域通常受益于高分辨率模型网格的使用。尽管沿海区域对分辨率非常敏感,但对于用于强制嵌套网格的边界场来说,这并不一定是正确的。赫尔辛基以外的地区采用第三代波谱模型WAM进行建模,使用高分辨率0.1 nmi网格。用两种不同分辨率的边界场(1 nmi和4 nmi)对该嵌套网格进行强制,并讨论了边界场变化对嵌套网格内有效波高的影响。与粗糙的4 nmi边界网格相比,精细的1 nmi版本能够以更高的精度模拟海岸线附近的波场。这也提高了嵌套网格内模拟显著波高的精度。然而,沿海群岛内部和嵌套网格内两个波浪浮标点的差异不显著。
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The effect of boundary field accuracy on high-resolution coastal wave modelling
The coastal area off Helsinki in the Gulf of Finland has both a complex shoreline and bathymetry which makes modelling the wave field especially challenging. Experience has shown, that these types of areas generally benefits from the use of a high-resolution model grid. Even though the coastal area is very sensitive to the resolution, this is not necessarily true for the boundary field used to force the nested grid. The area outside Helsinki was modelled with the third generation spectral wave model WAM, using a high-resolution 0.1 nmi grid. This nested grid was forced with boundary fields with two different resolutions (1 nmi and 4 nmi), and the difference in significant wave height inside the nested grid due to the change of boundary field is discussed. In comparison to the coarser 4 nmi boundary grid, the finer 1 nmi version was able to model the wave field with higher accuracy near the coastline. This led to an improved accuracy of the modelled significant wave height inside the nested grid also. However, the differences inside the coastal archipelago and at the two wave buoy sites inside the nested grid were insignificant.
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