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Storm surge and storm waves modelling due to Typhoon Haiyan in November 2013 with improved dynamic meteorological conditions

机译:暴风雨和风暴浪潮模型由于Typhoon Haiyan于2013年11月提高动态气象条件

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In November 2013, Typhoon Haiyan caused devastating coastal disasters in the central Philippines triggered by large storm surges which occurred during its passage. It is the strongest typhoon that have ever attacked Philippines in its history. In this study, numerical simulations are performed for the storm surge and storm waves, together with dynamic meteorological fields such as wind and pressure induced by Typhoon Haiyan, using an integrated atmosphere-waves-ocean modelling system. The wave-induced dissipation stress from breaking waves, whitecapping and depth-induced wave breaking, is parameterized and implemented in the wave-current interaction process, in addition to its influence on the storm surge level in shallow water along the coast of central Philippines. The simulated track of the typhoon captures the best track well. The effects of wave-induced dissipation stress in the wave-current interaction resulted in increased surge heights in the relatively shallow areas such as Leyte Gulf and Visayan Sea in the central region, where the bottom slope of the bathymetry ranges from mild to moderate. The results also show that wave-breaking has to be considered for accurate storm surge prediction along the east coast of Samar Island over the narrow surf zone with much finer meshes of the order of several meters.
机译:2013年11月,台风海燕导致菲律宾中央沿海灾害造成毁灭性的沿海灾害,这是由其段落发生的大型风暴潮。这是最强大的台风,曾经遭到攻击菲律宾的历史。在该研究中,对风暴浪涌和风暴波进行了数值模拟,以及动态气象领域,例如由台风海燕诱导的风和压力,使用集成的大气波海洋建模系统。除了沿着菲律宾海岸的浅水中的风暴喘振水平的影响之外,波动波引起波浪的波动耗散应力在波动相互作用过程中参数化和实施。台风的模拟轨道捕获了最好的轨道。波浪引起的波浪辐射应力在波浪电流相互作用中的影响导致了中央区域中的相对较浅的区域(例如Leyte Gulf和Visayan海中)增加的喘振高度,其中沐浴醇的底部斜率从轻度到中度。结果还表明,在狭窄的冲浪区沿着撒玛岛东海岸的精确风暴浪涌预测,必须考虑波浪的精确风暴浪涌预测,其狭窄的冲浪区具有多数米的啮齿线。

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