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极端事件下的海岸响应形态动力学建模:我们处于什么形态?

Modeling the Morphodynamics of Coastal Responses to Extreme Events: What Shape Are We In?

机构信息

Woods Hole Coastal and Marine Science Center, US Geological Survey, Woods Hole, Massachusetts 02543, USA; email:

Marine and Coastal Systems, Deltares, 2629 HV Delft, The Netherlands.

出版信息

Ann Rev Mar Sci. 2022 Jan 3;14:457-492. doi: 10.1146/annurev-marine-032221-090215. Epub 2021 Jul 27.

Abstract

This review focuses on recent advances in process-based numerical models of the impact of extreme storms on sandy coasts. Driven by larger-scale models of meteorology and hydrodynamics, these models simulate morphodynamics across the Sallenger storm-impact scale, including swash,collision, overwash, and inundation. Models are becoming both wider (as more processes are added) and deeper (as detailed physics replaces earlier parameterizations). Algorithms for wave-induced flows and sediment transport under shoaling waves are among the recent developments. Community and open-source models have become the norm. Observations of initial conditions (topography, land cover, and sediment characteristics) have become more detailed, and improvements in tropical cyclone and wave models provide forcing (winds, waves, surge, and upland flow) that is better resolved and more accurate, yielding commensurate improvements in model skill. We foresee that future storm-impact models will increasingly resolve individual waves, apply data assimilation, and be used in ensemble modeling modes to predict uncertainties.

摘要

本文综述了极端风暴对沙质海岸影响的基于过程的数值模型的最新进展。这些模型受气象和水动力大尺度模型驱动,模拟了整个 Sallenger 风暴影响尺度内的地貌形态变化,包括冲刷、碰撞、漫滩和淹没。模型变得越来越广泛(加入了更多的过程)和深入(详细的物理过程取代了早期的参数化)。最近的发展包括用于浅水波诱导流动和泥沙输运的算法。社区和开源模型已成为常态。初始条件(地形、土地覆盖和泥沙特征)的观测变得更加详细,热带气旋和波浪模型的改进提供了更好解析和更准确的强迫(风、波浪、涌浪和陆域水流),从而提高了模型的技能。我们预计,未来的风暴影响模型将越来越多地解析单个波浪,应用数据同化,并用于集合建模模式来预测不确定性。

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