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Dynamic modeling of barrier island response to hurricane storm surge under future sea level rise

机译:未来海平面上升下飓风风暴浪涌障碍岛应对的动态建模

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摘要

Sea level rise (SLR) has the potential to exacerbate the impacts of extreme storm events on the coastal landscape. This study examines the coupled interactions of SLR on storm-driven hydrodynamics and barrier island morphology. A numerical model is used to simulate the hydrodynamic and morphodynamic impacts of two Gulf of Mexico hurricanes under present-day and future sea levels. SLR increased surge heights and caused overwash to occur at more locations and for longer durations. During surge recession, water level gradients resulted in seaward sediment transport. The duration of the seaward-directed water level gradients was altered under SLR; longer durations caused more seaward-directed cross-barrier transport and a larger net loss in the subaerial island volume due to increased sand deposition in the nearshore. Determining how SLR and the method of SLR implementation (static or dynamic) modulate storm-driven morphologic change is important for understanding and managing longer-term coastal evolution.
机译:海平面上升(SLR)有可能加剧极端风暴事件对沿海景观的影响。本研究探讨了SLR对暴风动力学和屏障岛形态的耦合相互作用。数值模型用于模拟当天和未来海平面下墨西哥飓风两湾的流体动力学和形态学影响。 SLR增加了浪涌高度并导致透露在更多位置和更长的持续时间。在潮流衰退期间,水位梯度导致海鲜沉积物运输。在SLR下,向海向水位梯度的持续时间改变;由于近岸的近岸的砂沉积增加,较长的持续时间引起了更多的海洋横向障碍,并且由于近岸的砂沉积增加而较大的净损失。确定SLR和SLR实现方法(静态或动态)调制风暴导向的形态变化对于理解和管理长期沿海演变是重要的。

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