首页> 外文会议>OCEANS 2009, MTS/IEEE Biloxi - Marine Technology for Our Future: Global and Local Challenges >Simulating hurricane Gustav and Ike wave fields along the Louisiana innershelf: Implementation of an unstructured third-generation wave model, SWAN
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Simulating hurricane Gustav and Ike wave fields along the Louisiana innershelf: Implementation of an unstructured third-generation wave model, SWAN

机译:模拟沿路易斯安那州内架的古斯塔夫和艾克飓风场:非结构化第三代波浪模型SWAN的实现

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In this study we implement the recently developed unstructured mesh SWAN for simulating wave fields during hurricanes Gustav and Ike, which made landfall along the Gulf coast of the United States during September 2008. The model is validated using NDBC buoy observations offshore and data from several WA VCIS stations along the Louisiana coast From a fundamental research perspective, the numerical output from the unstructured version of SWAN, spectral as well as bulk wave parameters, when compared to in situ observations, show excellent agreement Our study results also imply that targeted sand mining from Sabine Bank, southwest Louisiana, would lead to negligible variations in the nearshore wave field; however, extensive dredging may render the coast vulnerable to higher energy waves and, therefore, more erosion and littoral sediment transport The conclusions from our study are also useful for designing viable dredging plans for the offshore sand deposits, such as Sabine Bank, for supporting coastal restoration and maintenance projects proposed along the northern Gulf of Mexico coast.
机译:在这项研究中,我们实施了最近开发的非结构化网格SWAN,以模拟飓风Gustav和Ike(在2008年9月沿美国墨西哥湾沿岸登陆)期间的波场。该模型使用NDBC浮标观测值和来自多个西澳大利亚州的数据进行了验证。路易斯安那沿岸的VCIS站从基础研究的角度来看,与原位观测相比,非结构化SWAN的数值输出,频谱以及体波参数显示出了极好的一致性。路易斯安那西南部的萨宾银行将导致近岸波场的变化可忽略不计;然而,广泛的疏dr可能使海岸容易受到较高的能量波的侵蚀,因此,更多的侵蚀和沿海沉积物的运输。我们的研究结论对于设计可行的疏sand计划,如萨比恩河岸,支持沿海地区的沙土沉积,也很有用。墨西哥北部海湾沿岸的修复和维护项目。

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