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量化海平面上升驱动的湿地迁移对波浪衰减的影响。

Quantifying the effects of sea level rise driven marsh migration on wave attenuation.

机构信息

Department of Civil, Environmental, and Infrastructure Engineering, George Mason University, 4400 University Dr, Fairfax, VA, 22030, USA.

Department of Earth, Environmental, and Sustainability Sciences, Furman University, 3300 Poinsett Highway, Greenville, SC, 29613, USA.

出版信息

Environ Monit Assess. 2023 Nov 16;195(12):1487. doi: 10.1007/s10661-023-12104-w.

Abstract

Sea level rise (SLR) is the most significant climate change-related threat to coastal wetlands, driving major transformations in coastal regions through marsh migration. Landscape transformations due to marsh migration are manifested in terms of horizontal and vertical changes in land cover and elevation, respectively. These processes will have an impact on saltmarsh wave attenuation that is yet to be explored. This study stands as a comprehensive analysis of spatially distributed wave attenuation by vegetation in the context of a changing climate. Our results show that: i) changes in saltmarsh cover have little to no effect on the attenuation of floods, while ii) changes in elevation can significantly reduce flood extents and water depths; iii) overland wave heights are directly influenced by marsh migration, although iv) being indirectly attenuated by the water depth limiting effects of water depth attenuation driven by changes in elevation; v) the influence of saltmarsh accretion on wave attenuation is largely evident near the marsh edge, where the increasing elevations can drive major wave energy losses via wave breaking. Lastly, vi) considering the synergy between SLR, marsh migration, and changes in elevation results in significantly more wave attenuation than considering the eustatic effects of SLR and/or horizontal marsh migration alone, and therefore should be adopted in future studies.

摘要

海平面上升(SLR)是对沿海湿地的气候变化相关的最重大威胁,通过沼泽迁移推动了沿海地区的重大转变。由于沼泽迁移导致的景观转变表现在土地覆盖和海拔的水平和垂直变化方面。这些过程将对盐沼波衰减产生影响,而这方面的影响尚未得到探索。本研究全面分析了气候变化背景下植被的空间分布波衰减。我们的研究结果表明:i)盐沼覆盖的变化对洪水的衰减几乎没有影响,而 ii)海拔的变化可以显著减少洪水的范围和水深;iii)陆上波高直接受到沼泽迁移的影响,尽管 iv)通过由海拔变化引起的水深限制效应间接衰减;v)盐沼增生对波衰减的影响在沼泽边缘附近非常明显,那里不断增加的海拔会通过波浪破碎导致主要的波能损失。最后,vi)考虑到海平面上升、沼泽迁移和海拔变化之间的协同作用会导致比仅考虑海平面上升的静态效应和/或水平沼泽迁移导致的波衰减更多,因此应在未来的研究中采用这种方法。

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