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首页> 外文期刊>Frontiers in Marine Science >The Impact of a Barrier Island Loss on Extreme Events in the Tampa Bay
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The Impact of a Barrier Island Loss on Extreme Events in the Tampa Bay

机译:屏障性岛屿损失对坦帕湾极端事件的影响

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Barrier islands characterize up to an eighth of the global coastlines. They buffer the mainland coastal areas from storm surge and wave energy from the open ocean. Changes in their shape or disappearance due to erosion may lead to an increased impact of sea level extremes on the mainland. A barrier island threatened by erosion is Egmont Key which is located in the mouth of the Tampa Bay estuary at the west-central coast of Florida. In this sensitivity study we investigate the impact a loss of Egmont Key would have on storm surge water levels and wind waves along the coastline of Tampa Bay. We first simulate still water levels in a control run over the years 1948-2010 using present-day bathymetry and then in a scenario run covering the same period with identical boundary conditions but with Egmont Key removed from the bathymetry. Return water levels are assessed for the control and the scenario runs using the Peak-over-threshold method along the entire Tampa Bay coastline. Egmont Key is found to have a significant influence on the return water levels in the Bay, especially in the northern, furthest inland parts where water levels associated with the 100-year return period increase between 5 cm and 15 cm. Additionally, wind wave simulations considering all 99.5th percentile threshold exceedances in the years 1980-2013 were conducted with the same control and scenario bathymetries. Assessing changes in return levels of significant wave heights due to the loss of Egmont Key revealed an increase of significant wave heights around today's location of the island.
机译:屏障岛占全球海岸线的八分之一。它们使大陆沿海地区免受风暴潮和来自公海的波浪能的影响。由于侵蚀造成的形状变化或消失可能导致极端海平面对大陆的影响增加。受侵蚀威胁的隔离岛是埃格蒙特礁(Egmont Key),它位于佛罗里达州中西部海岸的坦帕湾河口口。在这项敏感性研究中,我们调查了Egmont Key损失对坦帕湾海岸线沿线的风暴潮水位和风浪的影响。我们首先在1948-2010年的对照运行中使用当今的测深法模拟静止水位,然后在覆盖相同时间段且边界条件相同但从测深仪中删除了Egmont Key的情况下运行模拟。对回水水位进行控制评估,并使用“超阈值”方法在整个坦帕湾海岸线上运行情景。发现埃格蒙特基(Egmont Key)对海湾的回水水位有重大影响,特别是在北部,最内陆地区,与100年回水期相关的水位在5厘米至15厘米之间增加。此外,在相同的控制和情景水深条件下,进行了考虑1980-2013年所有99.5%阈值超出阈值的风波模拟。评估由于失去Egmont Key而导致的重要海浪高度返回水平的变化表明,今天的岛屿位置附近的重要海浪高度增加了。

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