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首页> 外文期刊>Journal of Marine Science and Engineering >Coupled Wave Energy and Erosion Dynamics along a Salt Marsh Boundary, Hog Island Bay, Virginia, USA
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Coupled Wave Energy and Erosion Dynamics along a Salt Marsh Boundary, Hog Island Bay, Virginia, USA

机译:美国弗吉尼亚州霍格岛湾沿盐沼边界的波能和侵蚀耦合动力学

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The relationship between lateral erosion of salt marshes and wind waves is studied in Hog Island Bay, Virginia USA, with high-resolution field measurements and aerial photographs. Marsh retreat is compared to wave climate calculated in the bay using the spectral wave-model Simulating Waves Nearshore (SWAN). We confirm the existence of a linear relationship between long-term salt marsh erosion and wave energy, and show that wave power can serve as a good proxy for average salt-marsh erosion rates. At each site, erosion rates are consistent across several temporal scales, ranging from months to decades, and are strongly related to wave power. On the contrary, erosion rates vary in space and weakly depend on the spatial distribution of wave energy. We ascribe this variability to spatial variations in geotechnical, biological, and morphological marsh attributes. Our detailed field measurements indicate that at a small spatial scale (tens of meters), a positive feedback between salt marsh geometry and wave action causes erosion rates to increase with boundary sinuosity. However, at the scale of the entire marsh boundary (hundreds of meters), this relationship is reversed: those sites that are more rapidly eroding have a marsh boundary which is significantly smoother than the marsh boundary of sheltered and slowly eroding marshes.
机译:在美国弗吉尼亚的霍格岛湾研究了盐沼横向侵蚀与风浪之间的关系,并提供了高分辨率的野外测量和航拍照片。使用频谱波模型“近海模拟波”(SWAN),将沼泽撤退与海湾中的波气候进行了比较。我们确认了长期盐沼侵蚀与波浪能之间存在线性关系,并表明波浪能可以作为平均盐沼侵蚀率的良好代表。在每个站点,侵蚀率在数个时间尺度上都一致,范围从几个月到几十年不等,并且与波浪功率密切相关。相反,侵蚀速率在空间中变化,并且几乎取决于波浪能的空间分布。我们将此变化归因于岩土,生物和形态沼泽属性的空间变化。我们详细的现场测量结果表明,在较小的空间尺度(数十米)下,盐沼几何形状与波浪作用之间的正反馈会导致侵蚀率随边界正弦度的增加而增加。但是,在整个沼泽边界(数百米)的尺度上,这种关系是相反的:那些侵蚀较快的地点的沼泽边界比被掩盖和缓慢侵蚀的沼泽的沼泽边界要平滑得多。

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